Claims
- 1. A spray-mist-evaporation-blower/air-pump-condensation system, that speeds up evaporation of liquids, and speeds up condensation of vapors, for various applications including production of cold and humid air that is supplied into a place, and/or feed into an engine, and production of potable water out of the sea water or out of water vapor, to name a few,wherein, water is sprayed in the form of fine mist by a plurality of atomizer nozzles to maximize water surface exposed to the environment; wherein, the fine mist is enclosed by a structurally strong against implosion air duct serving as vacuum evaporation chamber made resistant to the action of salt and heat insulated, the air duct made variably horizontal or vertical; wherein, the vacuum air duct, appurtenant components, and supporting structures, are made of glass and other materials resistant to salt action in a new structural; design so as to minimize materials by having braces, truss reinforcements, inflated structures and parts, interior curtains with weep holes, among others; wherein, the vacuum air duct is variably made adaptable to be assembled on land, floating on water, standing in the air, and submerged underwater for various additional functions and new applications such as, floating platform, floating sea wall, and underwater chamber/house, to name a few; wherein, moving air or wind is introduced at the inlet thru the evaporation air duct to prevent saturation of humidity inside the chamber and to move the air-water mixture as cold air out of the air duct; wherein, the air duct evaporation chamber is vacuumed to further speed up evaporation of the mist inside the air duct/chamber and to maximize cooling efficiency upon the air-water mixture; wherein, the evaporation vacuum chamber/duct is made sufficiently long to provide enough time for the water mist to evaporate completely while traveling along the length of the chamber; wherein, to provide high efficiency in spraying water mist, a plurality of venturi nozzles run by compressed air exhausting through the nozzle and used to spray mist inside the entrance section of the evaporation air duct; wherein, a high pressure multi-tube heat exchange cooling radiator is placed inside and alone the length of the evaporation chamber to maximize cooling of a separate source dry fresh air passing through the radiator, the resulting cold dry air being supplied to a house or an office; wherein, alternatively, after the vapor is cleaned by a cyclone cleaner, the high pressure water vapor coming from the cyclone cleaner is passed through the heat exchange cooling radiator tubes or cold plates to effect condensation of vapor into water; wherein, an air cleaning multistage centrifugal pump/gas turbine/blower, having an inlet communicated to the exhaust end of the evaporation chamber/air duct is used to vacuum the evaporation air duct and used to compress the resulting cold air-water mixture be rapid expulsion of vapor at its outlet end; wherein, an air throttle gate is provided at the inlet of the evaporation chamber to limit the entrance of air getting into the chamber to maintain the desired level of vacuum inside the evaporation chamber; wherein, the outlet end of the gas turbine is communicated to the inlet of a centrifugal cyclone dust separator as an integral part of this evaporator/cooling device, in order to remove all excess water particles and dusts of salts from the cold air-water mixture before the cold air is finally supplied to a house or office; wherein, the outlet of the centrifugal cyclone dust separator is communicated to the inlet of a gas turbine engine thereby feeding the resulting clean cold air-water mixture to the engine to increase the power output of the engine; wherein, alternatively, the clean cold air-water mixture from the outlet of the cyclone separator is released in the form of high pressure fine tiny bubbles through a deep cold drinking water to condense excess humidity and added to the drinking water; wherein, the dehumidified air coming out of the drinking water is recycled to blow water mist through the venturi nozzle atomizers inside the evaporation chamber to make sure the atomizing air is clean; and wherein, air supply direct from the atmosphere is pre-cleaned by releasing compressed air in the form of fine tiny bubbles under water before it is fed into a cooling radiator; comprising: an air duct made of glass and/or other materials resistant to acid/salt action, and resistant against implosion, serving as an evaporation vacuum chamber, having an inlet end, a first ¼ section, a first ¼ point, a last ¼ point, a last ¼ section, a first half section, a ceiling, a floor and an outlet end, the chamber made spacious a with sufficient length to provide evaporation time for the mist; a connector lip provided to each inlet and outlet end of the chamber; a front cover plate, having air throttle gates, attached by bolts to the inlet connector lip of the chamber; the vacuum air duct and its supporting structures having braces, trusses, struts, interior curtains with weep holes, inflated heat insulators and inflated structures in a new structural design and configuration so as to minimize construction materials, a main pressurized air supply duct piercing thru, and attached to, the front cover plate of the chamber, having an air outlet mouth serving as blower to push out the mist forward thru the evaporation chamber; [( see part 23 of FIG. 3, & last line of page 14 and line 1 of page 15 in the description of FIG. 3 )]a high pressure liquid header pipe piercing the cover plate and attached to the ceiling of, and within the first half section of, the chamber, and across the outlet mouth of the main air supply duct; [(see part 4 of FIG. 3)]a plurality of high pressure tube nipples, each having an inlet spacedly connected to the liquid header pipe, and an outlet pointed downward; a high pressure misting/atomizer nozzle functionally connected to the outlet of each nipple, to supply mists downward into the chamber; a main liquid supply pipe/hose communicated to the liquid header pipe; a plurality of atomizers attached/installed on the chamber's floor, within the first half section of, and to supply mist upward into, the chamber; a couple of a liquid tube and a compressed air tube piercing the floor of the chamber and functionally connected to each atomizer; a heat insulator/shelter wrapped around said liquid supply pipe; a heat insulator wrapped around or covering the chamber/air duct; an air cleaning multistage centrifugal air pump-vacuum/blower device, having an inlet and an outlet connector lips, connected to the outlet end connector lip of the evaporation vacuumed chamber; a clean compressed air inlet header pipe, having an inlet and having an outlet section that pierced thru the first ¼ point of, and having branches into, the chamber; a cold compressed air outlet header pipe, having an inlet section that pierced thru the last ¼ point of, and having branches into, the chamber, and having an outlet end communicated to cool a house/office; a plurality of cooling radiator compressed air tubes spacedly arranged inside of, and parallel to, the chamber, and spacedly connected to, and inter-communicating, the clean compressed air inlet header pipe branches with the branches of the cold air outlet header pipe; a closed water tank, having:—a top,—a bottom side, a compressed air inlet header pipe piercing the bottom side of, and branching inside, the tank,—a clean air outlet header pipe communicated to, and piercing thru the top of, the tank,—a water supply inlet pipe communicated with and supplying clean water into the water tank,—and, a dirty water low level outlet pipe communicated with the water tank; a header pipe connector inter-communicating the air inlet of the cooling radiator with the clean air outlet header pipe of the water tank; a plurality of perforated tubes spacedly connected to and communicated with the branches of the air header pipe inside the water tank, and submerged underwater in the water tank releasing tiny bubbles of air into the bottom of the water, for purposes of cleaning the air and to pressurize the air before being released into the water; an air duct communicated with the outlet header pipe of the cooling radiator, the other end of which communicated with a house air duct, to supply dry cold air into the house or an office/work building; a water pipe communicated with the dirty water outlet of the water tank, the other end of which communicated with a plurality of water atomizer nozzles that spray water upon another high pressure condensation radiator tube assembly inside another vacuum evaporation chamber; a centrifugal cyclone air cleaner, having an inlet and an outlet connector lips, with its inlet lip connected to the outlet connector lip of the vacuum pump; the cyclone air cleaner, being a new hybrid design, specially having a peripheral instilling chamber that is enclosed by and in between an outer vertical main drum body and by a perforated inner vertical drum wall; a main discharge air duct, in the form of a centrifugal-air-cleaning pipe having an internal helix/corkscrew wide face fin, connected to the outlet lip of the cyclone air cleaner, while another end of which connected to an air intake:—of an air conditioning system of a building,—of an abode place,—of a work place,—of an engine to multiply its power output,—of a high pressure condensation radiator tube assembly, and,—of a high pressure cold drinking water tank for condensation.
- 2. A spray-mist-evaporation-blower/air-pump system, that produce cold humid air in accordance with claim 1, including a new design for an air cooling system, wherein, for the same purpose of using an air blower to push and speed up evaporation of water mist in the wind in order to produce cold humid air passing thru a definite path as in claim 1, a plurality of water misting tube-nozzle device are attached to a front frame of an air blower, so that the water-misting device goes freely with the left and right oscillation of air blower, and water mists out thru the nozzles and evaporates into the wind being pushed out by the air blower to make the wind cooler, comprising:at least one air blower, run by any kind of motor, mounted on a free swing support stand, having a protection shell mounted around the motor, having an assembly of blower blades mechanically connected by a drive shaft to the motor, and having a front safety protection frame mounted around the blower blades; a resilient strap clamp tightly fitting around the motor's shell, the clamp being forcibly pressed/slided thru to hold on to the motor's shell; a water tube having a quarter arc bent section attached to the strap clamp by a couple of strap connectors; the water tube extended upward, bent over the protection frame, and bent down to the front of the air blower where the tube makes branches; a plurality of water misting nozzles, facing away from the blower, spacedly connected/communicated to the water tube and to the branches of the water tube at the front of the blower; the water tube being extended downward from the motor shell, with a coupling water-valve connector being provided at the bottom end of the tube; and a high pressure flexible water hose being communicated with said tube thru the coupling, and the output cold air being blown to an abode, to a greenhouse, to a livestock area, and to a recreation area.
- 3. A spray-mist-evaporation-blower/air-pump system, that produces cold and humid air in accordance with claim 1, including a new design for an air cooling system, wherein, for the same purpose of using an air blower to push and speed up evaporation of water mist in order to produce cold humid air passing thru a definite path as in claim 1, a self standing water misting device, in the form of a plurality of misting nozzles connected to a self standing water pipe erected in front of an air blower that directs the wind into a house/building thru its windows and thru its doors, or into a greenhouse, or to livestock area.
- 4. A spray-mist-evaporation-blower/air-pump system, that produce cold and humid air in accordance with claim 1, including a new design for an air cooling system, wherein, for the same purpose of using a moving air/wind to speed up evaporation of water mist in the wind in order to produce cold humid air passing thru a definite path as in claim 1, a plurality of tall water misting devices in multiple array are erected for the purpose of maximizing water mist being introduced into the blowing wind in an open field/space, comprising:a plurality of tall water misting high pressure pipes erected in a multiple array formation, standing on the ground or in an open field/space that needs cold and humid air; a plurality of water misting nozzles functionally connected to and around the sides of the high pressure water misting tall pipes to produce water mist; a plurality of water misting atomizer nozzles arranged in a multiple array formation in same open field to additionally introduce more water mist upward; a main high pressure water supply pipe having multiple branches spacedly laid on the a ground across the wind; each standing misting tall water pipe connected to a branch of the main water pipe; each water misting atomizer nozzle connected to a branch of the main water pipe; a high pressure compressed air pipe with multiple branches laid on the ground; each atomizer nozzle communicated to a branch of the air pipe; and a plurality of guy wires/ropes anchored to the ground and attached to each tall misting pipe to hold the tall pipes at an erect posture against the wind.
- 5. A spray-mist-evaporation blower/air-pump system, that produce cold humid air in accordance with claim 1, including a new design for an evaporator air duct, wherein, for the same purpose of taking advantage of the effectiveness of a vacuum evaporation chamber, a vacuumed air duct and a vacuumed cyclone air cleaner are assembled together in series as in claim 1, comprising:an evaporation vacuumed chamber/air duct having a limited air inlet and a wide air outlet; a unit of centrifugal cyclone air cleaner, having an air outlet, and with an air inlet connected and communicated to the air outlet of the vacuumed evaporation chamber/air duct; a unit of vacuuming air turbine/air pump machine, having its air inlet connected/communicated to the outlet of the cyclone air cleaner, such that the cyclone air cleaner also serves as an additional vacuum evaporation chamber.
- 6. A spray-mist-evaporation-blower-air-pump system, that produce cold humid air in accordance with claim 1 or claim 5, including a new design for a new hybrid high efficiency Centrifugal Cyclone Separator air cleaner, wherein, for the same purpose of taking advantage of the effectiveness of a vacuumed chamber to speed up evaporation by water mist, a Centrifugal Cyclone Separator air cleaner is improved and made to serve as vacuumed evaporation chamber as in claim 1, comprising:a cylindrical drum-type outer main body disposed at a vertical posture, having an open top, an open bottom lip, an upper ¼ section, an upper ¼ point, a middle ½ section, a lower ¼ section, a lower ¼ point, a lower section, and an air inlet window through its upper ¼ section; a circular top cover plate, having a center hole, attached to cover the open top of the drum; a vertical air outlet pipe, having an outside wall, an upper section, and a lower section,—attached to and piercing the center hole of the top cover plate, and extended downward with an open bottom to the level of the lower section of the main drum body; the air outlet pipe having perforations at its lower section to distribute air inlet; a smaller inner drum of the same shape as and having the same parts as the main drum body, additionally having a plurality of windows around, and centrally placed inside the main drum body, and centrally attached to the top cover plate, in order to create a stilling/settling chamber in between the main drum body and the inner drum; an air inlet window opened at the upper ¼ section of the inner drum, the air inlet window being aligned with the air inlet window of the main drum body; an air inlet portal duct, having an inlet lip connector, an outlet lip connector, outside walls, and having an inner side outlet lip; the portal duct eccentrically pierced thru the air inlet window of the outer main drum body, and further eccentrically pierced thru the air inlet window of the inner drum; the outlet lip of the portal duct air tightly connected to the inner drum inlet window; the outside walls of the portal duct air tightly connected to the outer drum inlet window; an extension of the inner side outlet lip of the portal duck being attached to the outside wall of the upper section of the vertical air outlet pipe; an inner frustum drum wall extension, having a lower lip, with an upper lip attached to the open bottom lip of the inner drum; a horizontal clean out upper basement floor plate attached to the lower lip of the inner frustum drum, and having a clean out conveyor device; a horizontal perforated floor, in the form of a cross-grillwork of wide-face vertical plates, attached to the inner frustum wall and to the upper floor plate to create a bottom instilling/settling chamber above said upper basement floor; an outer frustum drum wall, with a lower lip attached to the bottom lip of the main drum body, and extended down below said upper basement floor; a horizontal clean out lower basement floor plate attached to the lower lip of the outer frustum drum wall; a clean out device, in the form of various kinds, including but not limited to an auger, vacuum, a conveyor, and water flash, installed and connected in the upper and in the lower basement floors; a bottom drop off/discharge pipe with a gate valve to collect the dirt from the clean out devices and to ease up disposition of dirt to a disposal container; a water actuated valve being provided at the bottom discharge pipe to drop off water; and a wide-face spiral fin placed inside the cyclone air cleaner, attached around the central vertical air outlet pipe, to guide the air to move laminarly along a spiral path.
- 7. A spray-mist-evaporation-blower/air-pump system, that produce clean humid air in accordance with claim 1 or claim 6, including a new design for a car/truck engine, wherein, for the same purpose of taking advantage of the effectiveness of the hybrid cyclone air cleaner as in claim 1, the mouth of the car's/truck's air intake manifold is set out up front to face and collect the wind, even when it is raining, thru a wide-mouth ram up front in order to supercharge the engine, and wherein, the air intake manifold is communicated to the air inlet of a Hybrid Centrifugal Cyclone Air Cleaner which in turn is communicated to supply clean air to the engine's air intake, as in claim 1 or 6, in order to clean the intake air before it gets into the engine, and wherein, for the same purpose of taking advantage of the effectiveness of humid air in increasing the power output of an engine, as in claim 1, water is mist sprayed to said up front mouth of the air intake manifold to provide clean humid air to the engine when there is no rain shower.
- 8. A spray-mist-evaporation-blower/air-pump system, that produce clean humid air in accordance with claim 1 or claim 6, including a new design for a gas turbine engine, wherein, for the same purpose of taking advantage of the effectiveness of the hybrid cyclone air cleaner and to take benefits from the advantages of a humid air getting into an engine as in claim 1, a Hybrid Centrifugal Cyclone Air Cleaner is connected to supply clean air to the air intake manifold of the engine, the compressor of the gas turbine engine being the one vacuuming the cyclone air cleaner, and wherein, water is mist sprayed upon the air intake of the cyclone air cleaner, in order to feed the engine with cold humid air, free from salts, minerals, dirt, and water droplets, in order to multiply the power output of the engine.
- 9. A spray-mist-evaporation-blower-air-pump system, that produce cold dry air in accordance with claim 1, including a new design for a multistage cooling system, wherein, for the same purpose of taking advantage of the effectiveness of a vacuumed chamber to speed up evaporation/cooling process by water mist, the pre-cold air being feed into a vacuumed evaporation air duct comes from a cooling radiator that is inside of another vacuumed evaporation air duct, and that the pre-cold air being feed into a final radiator that is inside a final vacuumed evaporation air duct comes from a radiator that is inside another vacuumed evaporation air duct, and wherein, the cold dry air coming out of the final radiator is feed into a house/office, and into a refrigerator.
- 10. A spray-mist-evaporation blower/air-pump system, that produce cold humid air in accordance with claim 1, including a new design for an air cooling system, wherein, for the same purpose of taking advantage of the effectiveness evaporating water to speed up cooling process by water mist thru the wind which is confined in a definite path, a plurality of water atomizers are used to spray water mist inside an air duct and a pre-cold compressed air is feed into the main inlet of said air duct in order to push the water-mist-air mixture thru the duct, and the outlet of said air duct being communicated with the place where the cold air is needed.
- 11. A spray-mist-evaporation-blower/air-pump-condensation system, that speeds up the evaporation of water in accordance with claim 1 or claim 4, including a new design for a salt making and for a water desalination system;wherein, for the same purpose of taking advantage of the effectiveness of the water mist-blower system in evaporating water thru the wind by misting water in front of an array of multiple blowers as in claim 1, a plurality of standing misting pipes are erected in a multiple array formation together with a multiple array formation of water atomizer; wherein salt water is mist sprayed thru this system, in order to evaporate the salt water and collect the salt; wherein, the resulting humid air is enclosed by a high altitude tower inflated light weight balloon structural post frames, curtains and tents to form clouds within said enclosure in order to condense the vapor into a drinking water; wherein, the major part of the air being used to blow the water mists comes from within said enclosure; wherein, an inflated light weigh vacuum air duct, consisting of spacedly bundled inflated posts, is erected tall inside the enclosure with its intake mouth extended near to the ceiling of the enclosure to suck the clean vapor/clouds and communicated to deliver the vapor into the air duct system of claim 1 for condensation; and wherein, further, cold condensation plates/tubes are installed inside the enclosure.
- 12. A spray-mist-evaporation-blower/air pump system, that speeds up the evaporation of water in accordance with claim 1 or claim 5, including a new design for salt making and water desalination system, wherein, for the same purpose of using and taking advantage of the vacuumed chamber to speed up water evaporation by water mist as in claim 1, by means of water atomizer, sea water is mist sprayed into a vacuumed evaporation air duct, and the resulting humid air coming out of the cyclone separator is compressed into a plurality of radiator tubes that are submerged in a cold environment in order to condense the moisture content of the air, and the resulting condensed water stored into a drinking water.
- 13. A spray-mist-evaporation-blower/air-pump-condensation system, in accordance with claim 1, including a new apparatus for collecting humid air from the clouds and condensing the same into potable water,wherein, in order to take advantage of the God given already cold clean vapor, and for the same purpose of taking advantage of the effectiveness of the vacuum air duct for cooling process, and to take advantage of the effectiveness of compression in condensing vapor, as in claim 1, the apparatus of claim 1 is further improved by incorporating—a high altitude tower wall used to stop the clouds, and to contain the cold thick clouds which are sucked by the vacuum air duct and supplied to an office building or supplied into a high pressure condenser, wherein, the high tower wall comprising: a strong light skin/cloth is made into a large elongated hose and filled up with compressed air or light gas in order for it to stand and serve as light weight post/structural member, the inside of which being sprayed with plastic film to become air sealed; a plurality of the inflated elongated light post structures are bundled together side-by-side and erected on mountain tops to form a high altitude tower wall, or tower enclosure, or tent,—to the level of the clouds,—in order to stop and to accumulate the clouds for forced condensation, if not to produce rain; wherein, a tall/high tower inflated suction trunk serving as vacuum air duct made of strong fiber sheets is erected within the enclosure on the mountain top to suck the clouds and communicated to deliver the clouds to the vacuum air duct of claim 1; and wherein, the tall inflated suction trunk comprising: a plurality of high pressure light gas inflated post/structural members; a plurality of high pressure inflated structural rings having outside periphery and spacedly arranged co-axially; each inflated post spacedly attached to the outside periphery of each ring and perpendicular to each ring thereby forming a large cylinder, the hole of the rings serving as one central hole of the resulting cylindrical assembly; and a non-porous sheet is wrapped around the cylindrical assembly to form a large air duct, the spaces between the posts, the spaces enclosed by the sheet serve as vapor passages along the resulting inflated air duct, and wherein, water is mist sprayed at the top of the trunk when there are no clouds, to give enough time for the water particles to evaporate while dropping downward inside the trunk, and the truck serves as a vacuumed air duct.
- 14. A spray-mist-evaporation-blower/air-pump system, that produce cold humid air in accordance with claim 1 or claim 6 including a new design for a gas turbine engine, wherein, to take advantage of using the effectiveness of the vacuumed chamber to speed up the evaporation by water mist in the production of humid air that feeds into an engine, the vacuumed evaporation chamber is assembled in a series with the air intake of an engine by directly connecting and communicating an assembled line of said air duct with said hybrid cyclone air cleaner to the air intake of said gas turbine engine, the turbine compressor pump of said engine is the one vacuuming the evaporation air-duct-cyclone assembly.
- 15. A spray-mist-evaporation-blower/air-pump-condensation system, in accordance with claim 1, including a new design for a distillation-condensation device, wherein, water vapor, oil vapor, acid vapor, the gas fumes/vapor of burning organic matters, the smoke from incinerators, barbecue fumes, and sulfur vapors are passed thru the multi-tube radiator that is inside the vacuumed air duct evaporation chamber, in order to cool and condense said vapors and to collect the distillates.
- 16. A spray-mist-evaporation-blower/air-pump-condensation system, that produce humid air in accordance with claim 1, including a new design for a distillation and a water desalination device;wherein, for the same purpose of using and taking advantage of the effectiveness of the vacuumed chamber to speed up evaporation of the water mist, the vacuumed evaporation air duct system of claim 1 is further improved by incorporating a multi-tube external heating radiator inside a solar trap under the sun, thru which the salt water is heated up before being sprayed into the vacuum air duct; said solar trap being as per claim 1 and claim 13 of U.S. Pat. No. 5,507,943; said radiator being further extended into a fuel burning oven to superheat the salt water, the water outlet of the heating radiator communicated to the misting nozzles; and wherein further, hot air is being forced thru the multi-tube radiator inside the vacuumed evaporation air duct to enhance evaporation of the water mist being sprayed into the evaporation air duct, and wherein further, the resulting high humidity air coming out of the air duct is being highly compressed at the back of or after the vacuum pump and being released in the form of fine/tiny bubbles thru pressurized distilled cold water in a container that has controlled air/water outlet, and wherein further, the excess/surplus air after condensation is forced to pass thru another multi-tube radiator inside the compressed vapor container at the back of the vacuum pump to pickup heat and being re-used/recycled to continue spraying water mist thru said atomizers into the evaporation air duct so that there is no humid air being expelled out of the system, and a salt extractor being provided at the bottom of the air duct.
- 17. A spray-mist-evaporation-blower/air-pump-condensation system, that produces humid air and distillates in accordance with claim 1, including a new design for a new distillation device/system or process, wherein, for the same purpose of using and taking advantage of the effectiveness of the vacuumed chamber to speed up evaporation by water mist, the liquid being distilled is pressurized in pipes, then pre-heated in a first multi-tube radiator, then by misting nozzles and atomizers the liquid is mist sprayed into a vacuumed internally heated air duct where the liquid is evaporated, then the resulting hot humid air is sucked from the air duct by a vacuum pump which compresses the hot humid air into a second multi-tube radiator the tubes of which pass inside the tubes of the first multi-tube radiator where the heat is transferred back to the first multi-tube radiator to pre-heat the liquid passing thru the first radiator and to condense the hot humid air, then the un-condensed excess hot humid air which is still high pressure is released in the form of fine/tiny bubbles passing thru multiple standing cold pipes containing the already distilled pressurized cold liquid to further condense vapors still mixed with the compressed air, then the un-condensed compressed air is re-channeled/recycled and forced thru heated compressed air tubes inside the compressed section of the air duct and being used to blow air thru the atomizers at the starting section of the vacuumed air duct, so that there is no additional air coming from outside atmosphere to participate in the process.
- 18. A spray-mist-evaporation-blower/air-pump system, that produce cold humid air in accordance with claim 1, including a pressurized water container added and connected to the water pipe to supply high pressure water to misting nozzles which are disposed in front of a blower to speed up evaporation thru the wind comprising:a plurality of pressurized bottles and pressurized tanks serving as water containers to produce high pressure water supply; a plurality of flexible water hoses connected to and intercommunicating the pressurized water containers; a compressed air source connected to and intercommunicated, by means of air hoses, with said water containers; a tubing having a plurality of branches and having an inlet coupling connector; a plurality of misting nozzles connected to the branches of the tubing; a flexible water hose connected to and intercommunicating the misting tube-nozzles device with the pressurized water containers, and the misting-tubing-nozzle device attached to a support structure in front of the blower.
- 19. A spray-mist-evaporation-blower/air-pump system, that produce cold humid air in accordance with claim 1, including a new design for a misting device that is disposed in front of an air blower to speed up evaporation and cooling process thru the wind, comprising:a tubing, having an inlet connector for liquids and having a multiple of misting branches, directly attached to a front safety framing of an air blower; a plurality of misting nozzles functionally connected to said tube branches; and a flexible supply hose directly connected to said water inlet connector.
- 20. A spray-mist-evaporation-blower/air-pump system, that produce cold humid air in accordance with claim 1 or claim 19, including a new design for a misting device that is disposed in front of an air blower to speed up evaporation and cooling process thru the wind, said device being made up of a flexible tubing having multiple misting nozzles connected to it, and said device being coiled into a multi-concentric circles and attached to a framing in front of a blower.
- 21. A spray-mist-evaporation-blower/air-pump system, that produce cold humid air, in accordance with claim 1, including a new process means for pressurizing a closed tank/container/pipe/inflatable having an intake mouth with an air tight cap, said process means includes a plurality of chunks of Dry Ice or solidified/liquefied air being placed inside said tank thru said intake mouth and then said mouth being air tightly covered with said cap; some use of this pressurized inflatable being, but not limited to, for producing high pressure water connected to misting devices, and for use as light structural members like a boat/platform/roof/post.
- 22. A spray-mist-evaporation-blower/air-pump-condensation system, that produce cold humid air, in accordance with claim 1, including a new design for a water desalination system, wherein, to further improve the apparatus of claim 1, and for the same purpose of using and taking advantage of the effectiveness of the vacuumed chamber to speed up the evaporation of water mist, an oppositely rotating multistage turbine vacuum pump and a centrifugal multistage axial flow compressor pump are mechanically interconnected/communicated in a series with the outlet of the vacuumed air duct of claim 1 in order to attain high compression of the vapor, each stage of the centrifugal pump having anti-centrifugal instilling fins and excess water catch gutters inside its outlet chamber.
- 23. A spray-mist-evaporation-blower/air-pump-condensation system, in accordance with claim 1 or claim 6, including a new design for a hybrid cyclone centrifugal separator/air cleaner that also functions as a centrifugal pump to vacuum the evaporation chamber of claim 1, wherein, for the same purpose of using and taking advantage of the effectiveness of the vacuumed chamber to speed up evaporation of water mist, a hybrid cyclone centrifugal air cleaner is provided with central centrifugal blades to pump air, and is functionally connected/communicated to the outlet of the vacuumed chamber to serve as vacuum pump for the evaporation chamber of claim 1, comprising:a cylindrical drum-type outer main body disposed in a vertical axis, having frustum lower drum extension, and having a circular top cover plate with a center circular window; a bottom cover plate with an exit door provided to the lower frustum drum; a cylindrical inner drum with an open top, having inner walls, having a lower section, having a frustum bottom drum extension with a bottom cover plate with an exit door, having a plurality of windows/perforations on its side walls, and centrally placed inside the outer drum, with its open top attached to the top cover plate of the outer drum; a circular air portal in the form of a large upside down cap with open lips, having a top circular window and having an inlet portal connector, the lip of which being air tightly attached to the center circular window of the top cover plate; a plurality of vertical plate spacer bars radially inserted evenly spaced around in between, and interconnecting the outer drum body and the inner drum, to create a good instilling space dust settling chamber between the two drums; a vertical outlet air duct, having a lower section, inserted thru, and attached to, the top circular window of the cap, the bottom end of which being attached by a plurality of radial connector plates to the inside walls of the lower section of the inner drum; a drum-type motor attached to and around, and co-axial with, the lower section of outlet air duct; a plurality of wideface centrifugal blades radially/functionally attached to and driven by the drum-type motor; a plurality of instilling wideface plates spacedly, radially, and vertically attached to the inner walls of the inner drum, and disposed immediately below the centrifugal blades; an additional smaller perforated frustum drum, having a bottom floor, centrally attached, by a plurality of radial vertical plate spacer bars, to the bottom cover of the inner drum to create additional stilling chambers below the bottom end of the outlet air duct; and the outlet connector lip of the evaporation air duct attached by bolts to the inlet portal connector of the air portal.
- 24. A spray-mist-evaporation-blower/air-pump system, that produce cold humid clean air, in accordance with claim 1, wherein, for the same purpose of maximizing effectiveness and utilization of the vacuumed chamber—air-cleaning air duct system, the apparatus of claim 1 is further improved by using a newly designed multi-stage air cleaning centrifugal pump, in lieu of a gas turbine pump/air blower, having an inlet functionally connected/communicated to the outlet of the evaporation chamber serving as a vacuum pump for the evaporation chamber of claim 1 and serving to push out/compress the cold air thru its outlet, comprising:at least one or a plurality of axial flow centrifugal pumps co-axially arranged in a series, acting as one unit, wherein air axially enters and exits from pump to pump; each pump having a scrawl shell/case enclosing a chamber; the scrawl shell consisting a front and a rear circular plate wall interconnected by a peripheral outer drum wall; the front circular plate having a center air passage circular window serving as air inlet of the pump, and having an outer peripheral connector edge attached to the drum; the rear circular plate wall having a center air passage window serving as outlet for the pump; each rear circular plate having an inside face; each drum having a top section and a rear bottom section; a center axial clearing hole centrally attached by radial flat bars to the air window of each front and each rear circular plate wall; each peripheral drum wall having an inside face, and having a frustum rear extension drum with an inside face; each rear extension frustum drum attached to the outer peripheral connector edge of each rear circular plate wall; an air outlet pipe communicated to the last pump's chamber, piercing the top section of, and attached to, the drum wall; a waste water outlet pipe communicated to the chamber, piercing the rear bottom section of, and attached to, each drum wall, and having an automatic water release float valve; a ring-type water catch gutter attached to the inside wall face of the rear circular plate; a short air duct centrally and co-axially inter-communicating the outlet of the preceding pump to the inlet of the next succeeding pump, and so on; a pipe drive shaft, having an outside face, having a front end mechanically/functionally attached to a motor set outside the front end of the vacuum air duct, made long enough and extended to pass thru the central axis of the vacuum evaporation air duct, being extended to pass thru and fit with each front center bearing of each pump, and further being extended to pass thru and fit with each rear center bearing of each pump, driving all the pumps as one unit; a cap attached to and covering the each end of the pipe drive shaft; the vacuum evaporation air duct having a front end with a throttle air inlet valve, and a front center axial bearing hole fitted to functionally hold on to the end section of the drive shaft; an inner frustum drum having a front end axially attached by a circular plate of same diameter to and around the outside face of the pipe drive shaft and bumped to the front bearing hole of each front circular plate wall, and having an outside face, and a rear end; a plurality of wide-face impeller centrifugal blades having a rear edge, placed inside and within the first half section of the scrawl case/pump chamber, each having an inner end radially/spacedly attached to and around the outside face of each inner frustum drum, each having a front edge barely clear off the front circular plate wall, each having a outer end barely clear off the drum wall; a plurality of stator anti-centrifugal plates/fins spacedly attached to the inside face of each peripheral drum wall and to the inside face of each frustum peripheral drum wall, and barely clear off the outer and rear edges of the centrifugal impeller blades; the stator plates having front ends made slant against the motion of the centrifugal blades, same plates made curved to be parallel to the drive shaft to stop the air from revolving; a circular plate driven by the drive shaft, having a center hole attached to the outside face of the drive shaft, same plate shorter in diameter than the centrifugal blades to provide air exit at the outer end section of the blades, and same plate attached to the rear edge of, and to serve as means to drive, the centrifugal blades; a waste water outlet pipe, having an automatic water release float valve, piercing each rear circular plate wall and connected/communicated to the ring-type water catch gutter; and a newly designed and newly invented centrifugal-air-cleaning delivery air duct, comprising: an inside wall, a bottom; an air inlet communicated to the outlet of the last air pump of the multistage centrifugal air pump; a wide-face spiral/helix fin/corkscrew attached to a central axial framing pipe disposed into the air duct, the wide-face fin further attached to the inside walls of the air duct; a plurality of waste water outlet pipes that pierced the bottom of same air duct, the water outlet pipes provided with an automatic water release float valve, and an outlet communicated to a house/office, for the same purpose of improving the effectiveness of the evaporation-air-cleaning air duct system of claim 1 in removing excess water from the cold humid air.
- 25. A spray-mist-evaporation-blower/air-pump-condensation system, that produce cold humid air and distilled water in accordance with claim 1, including a new device for forced condensation of the clouds, wherein the vapor air duct of claim 1 is further improved by adding a high elevation suction trunk that supply vapor/clouds into the vacuum air duct of claim 1, for the same purpose of maximizing utilization and taking advantage of the effectiveness of the condensation apparatus of claim 1, and to take advantage of the already clean vapor/clouds, in which case the clouds are compressed inside radiator tubes placed inside the cold vacuumed evaporation air duct in order to produce distilled water out of the clouds, comprising:a cloud gathering device in the form of a multi-window erected tower suction trunk serving as cloud/vapor air duct, having an open top and side windows with controlled throttle valves serving as cloud inlet, and having a bottom air outlet communicated to the air inlet of the vacuum air duct of claim 1, the suction trunk laid on mountain slopes or erected on mountain tops, the windows being in various levels/elevations and individually controlled for selective elevation of openings corresponding to the actual cloud location; a vacuum/compressor pump, having an outlet, and an inlet connected/communicated with the air outlet of the vacuum air duct; a high pressure multi-tube radiator condensation assembly/condenser enclosed by the cold vacuum air duct, having an outlet header pipe, and having an inlet header pipe communicated with the outlet of the compressor pump; a plurality of water atomizers attached to a ceiling of the vacuumed air duct; an upward branch of the condenser outlet header pipe separating compressed air from the distilled water and extended to supply compressed air thru the atomizer nozzles; a downward branch of the condenser outlet to conduct distilled water thru an automatic release float valve into a storage tank.
- 26. A spray-mist-evaporation-blower/air-pump-condensation system, that produce cold humid air and distilled water in accordance with claim 1, wherein, for the same purpose of maximizing utilization and taking advantage of the compressed vapor-water-tank-tiny-bubbles assembly to speed up condensation as in claim 1, the apparatus of claim 1 is further improved and made adaptable to an effort of gathering the already made clean vapor/clouds, by incorporating a new device to the apparatus of claim 1 in the form of a light weight inflatable tower trunk that gathers the clouds and feeds vapor, thru the vacuum air duct, to a vacuum/compressor pump which feeds compressed vapor to a perforated multiple tube that release tiny bubbles of vapor underwater, comprising:a plurality of light weight inflated vertical posts spacedly attached around outside a plurality of vertically and co-axially spaced inflated horizontal rings, the resulting bundle of posts serving as a framing structure; the rings spacedly attached to the posts in a vertical array formation thereby creating a large downward passage for the air/clouds thru the rings; a light weight sheet wrapped around outside the bundle of posts to create enclosures of large air passages in between posts, thereby creating a large tower suction trunk having a bottom outlet connector; a vacuum/compressor pump, having an outlet connector, and having an inlet connected/communicated to the bottom outlet of the trunk via the vacuum air duct; a plurality of cut-out windows spacedly created around said wrap sheet at various levels, serving as inlet for the clouds, each windows having a controlled cover for selective opening and/or shut off; a pressurized water tank, mostly filled up with clean drinking water, having: a water inlet and a water outlet controlled by automatic release float valve; a top pressure controlled air outlet; a bottom air inlet header pipe communicated with the outlet of the compressor pump and having underwater branches inside the tank; a plurality of underwater perforated air tubes spacedly communicated with the underwater branches of the bottom air inlet header pipe, serving as means to release tiny bubbles of the compressed clouds under the water, each tube having a closed end; a multi-tube cooling radiator underwater assembly inside the tank, having an air inlet thru one side of, and an air outlet thru the opposite side of, the water tank, and cold air being passed thru said underwater cooling radiator to cool the water; and a drinking water supply pipe connected to the water outlet of the tank.
- 27. A spray-mist-evaporation-blower/air-pump system, that produce vapor and distilled water out of vapor/clouds, in accordance with claim 1, including a new design for converting vapor or humid air or the clouds into drinking water, to take benefits from the effectiveness of the enhanced evaporation and condensation system as in claim 1, comprising: a plurality of multiple vertical wide-face cold plates or sheets arranged into a multi-level roof in a humid environment or to the levels of the clouds, serving as condensation plates assembly; a plurality of cooling tube coils attached on each plate/sheet, and a water gutter attached to edge of each plate/sheet to collect distilled water.
- 28. A spray-mist-evaporation-blower/air-pump condensation system, that produce vapor and distilled water, in accordance with claim 1,wherein, for maximum utilization, the desalination apparatus of claim 1 is further improved to form a new design for a vacuum evaporation chamber for evaporating sea water, and further serving as an ocean platform floater and as ocean wave-energy converter/breaker, having a top floor made of various kinds serving as a playground, an air port, a solar trap, a residential land and agricultural land; wherein, for the same purpose of using taking/advantage of the effectiveness of the vacuum chamber in combination with water mist to speed up evaporation as in claim 1, the chamber of claim 1 is further improved and made spacious and elongated to provide evaporation time for the water mist; wherein, to take advantage of the structural strength of the chamber, a plurality of these elongated chambers are assembled side-by-side as first layer, and an upper layer of same kind crossing the first layer, and the resulting stiff platform is floated on the ocean, serving as vacuum evaporation chamber as in claim 1; wherein, a solar trap in the form of a multi-layer transparent roof flat roof is attached to cover the platform to warm the chambers by sunlight, the roof made strong to serve as playground; wherein, each chamber is subdivided by cross walls for safety and to provide a habitable sub-chamber dwelling place or a home underwater with an air supply system; and wherein, each chamber comprising: a hard main arc action structural vacuum container, having: inside walls, ceiling, one end closed, a vapor outlet, and floor, serving as vacuum evaporation chamber; each vacuum container made strong against implosion, and made up of various strong materials and forms, some of which being an underground tunnel, masonry duct, wood barrel, transparent glass pipe/drum, concrete ducts, and metallic/plastic pipes, to name a few; a plurality of framing spacedly attached to the inside walls of the main vacuum container; a curtain sheet resistant to salt/acid action, having: a ceiling, a floor, an inside face, an outside face;—attached to the framing, covering the ceiling, the inside walls and the floor of the vacuum container; a few breathing sheltered air holes punched along the ceiling of the curtain to equalize pressure from the outside face to the inside face of the curtain; a main water supply pipeline and a main compressed air pipeline, connected to and piercing the vacuum container and the curtain sheet; the water pipe and the air pipe being extended along the length of, and attached to and below the ceiling of, the curtain; a plurality of atomizer nozzles spacedly communicated with the water pipe and to the air pipe; a plurality of railroad ties connected/laid on the floor of the curtain sheet; a couple of rail tract beams laid on the rail ties to form a railway along the vacuum evaporation chamber for easy maintenance; a low level waste water outlet device, having automatic release float valve, connected to and piercing the floor of the structural vacuum container and the floor of the curtain; a low level waste water outlet device, having automatic release float valve, connected to and piercing the floor of the structural vacuum container; a vacuum/compressor pump, connected to and communicated with the vapor outlet of the evaporation chamber, and having an outlet communicated to the inlet of the multiple radiator condensation tube assembly placed inside the evaporation chamber, the condensation tubes having an outlet header pipe; a cold water tank containing multiple branches of perforated tubes at its bottom section, the perforated tubes having an inlet header pipe piercing one side of the tank and communicated with the outlet of the radiator condensation tube assembly; each perforated tubes serving as means to release the compressed vapor in the form of tiny bubbles underwater to speed up further condensation.
- 29. A spray-mist-evaporation-blower/air-pump-condensation system, that produce vapor and distilled water, in accordance with claim 1, including a new design for a desalination system being used in households, in work/office places, on floating transportation, in camping, on floating stations, and as a portable distillation device, wherein, for the same purpose of using and taking advantage of the effectiveness of the a vacuum chamber in combination with water mist to speed up evaporation, and further taking advantage of vapor compression to speed up condensation as in claim 1, the vacuum chamber is made household size and portable, comprising:a structural vacuum drum strong against implosion disposed at erect posture, having: an outside face, an inside face, an upper/lower end section, a top lip, and a bottom lip, serving as evaporation chamber; a plurality of reinforcing structural ring ribs spacedly attached to the inside face of the vacuum drum; at least one window, having a movable transparent cover, cut out thru the drum; a curtain thin sheet, resistant to salt/acid action, shaped into a form that suit to serve as lining around the inside face of the drum, in a less diameter than the ring ribs, and having collar lips at both ends to fit/rest upon the top/bottom lips of said drum; at least one sheltered weep air hole punched or provided on said curtain; a plurality of lock bolt ears attached to the upper/lower end sections of, and outside walls of, the drum; a cover plate, made strong against implosion, having a cylindrical rim, and attached to and being pressed upon each top/bottom lips of the drum and pressed upon the collar lips of the curtain; a circular seal sheet placed and sandwiching the curtain collar lips between the cover plates and the drum lips; a plurality of lock bolt ears, each having a catch notch/hole, correspondingly attached to the cylindrical rim of the cover plate, in pairs with the lock ears of the drum; a wing knot lock bolt pivotally attached to each lock ear of the drum, and being connected to each corresponding lock ear of the cover plate thru each notch; a plurality of misting nozzles and/or atomizer nozzles, piercing inward thru and attached to the top/bottom cover plate, to introduce water mist into the evaporation chamber, the bottom nozzles being well above the bottom cover plate; a couple of compressed air and water supply pipe functionally connected to the atomizer nozzles; at least a couple of foot-post assembly oppositely attached to the rim of the bottom cover plate, to make a room for outlet devices under the drum; a vapor outlet pipe, piercing thru and attached to the top/bottom cover plate, having sheltered multiple vapor inlet windows and a wide sheltered inlet mouth, and being extended out of the drum with a vapor outlet; a vacuum/compressor pump, having an outlet connector, its inlet connected/communicated to the outlet of the vapor outlet pipe; a high pressure condensation radiator tube/pipe assembly, having a bottom header pipe outlet piercing out thru the bottom cover plate, and having a top inlet header pipe piercing thru the top cover plate and communicated to the outlet of the compressor pump, the condensation radiator assembly placed and made in contact with cold matter—one of which is the vapor inside the vacuum evaporation chamber; a float valve-type air-water separator device, having an air outlet, a water outlet, and having an inlet communicated to the outlet of the condensation radiator; a compressed air pipe, having one end communicated to the air outlet of the air/water separator, and another end communicated to the air supply pipe of the atomizer nozzles; a high pressure potable water tank, having an outlet connector, and having an inlet communicated to the water outlet of the air-water separator; a water outlet faucet having an inlet connected to the outlet of the high pressure potable water tank; an automatic waste water/brine expulsion device, having: a float valve floating on the brine above the bottom cover plate, wherein the bottom section of the vacuum chamber serves as a brine storage tank, having a brine/water outlet pipe communicated with the float valve and piercing down thru the bottom cover plate—serving as drainage for excess water/brine from the drum; and a salt/top water high pressure tank with its outlet communicated with the water supply pipes of the atomizer nozzles.
- 30. A spray-mist-evaporation-blower/air-pump-condensation system in accordance with claim 1 or claim 29, including a new design for a portable distillation device having a heating system placed inside the vacuum evaporation drum of claim 29, wherein, for the same purpose of taking advantage of the effectiveness of the vacuumed chamber in combination with water mist to speed up evaporation as in claim 1, the vacuumed evaporation chamber is further improved by adding a plurality of heating pipes inside the vacuumed chamber, spacedly piercing and connected to the top and to the bottom cover plates of the vacuum drum, having a top outlet and a bottom inlet, a heat supply medium/device of various kinds—some of which being an electric heating element, and hot air/water from fuel burning engines/engine exhaust pipes/incinerators/volcano/solar to name a few,—being passed thru or being placed inside the heating pipes.
- 31. A spray-mist-evaporation-blower/air-pump condensation system, that produce humid air and distilled water, in accordance with claim 1,wherein, the desalination apparatus of claim 1 is further improve and the chamber is built floating on water to form a new design for an ocean floating platform serving as a desalination apparatus having a water outlet, and at the same time serving to solve the problems of, and utilizing the energy of the ocean waves, wherein, to maximize utilization, the vacuumed evaporation chamber of claim 1 is further improved to be much longer, larger, structurally stronger, and subdivided into sub-chambers by cross wall for safety against leaks, and made able to carry a floor made of various kinds corresponding to various purposes, some of which are, for an airport, for a residential/industrial land, for natural energy converter and a floor for agricultural activity over and under the ocean; wherein, some of the sub-chambers are made into residential houses and offices; and wherein, a plurality of the vacuumed chambers are assembled side-by-side into a one layer floating platform on the ocean, comprising: a plurality of elongated structural vacuum-misting-evaporation-condensation chamber, assembled closely together side-by-side, and laid floating across the waves on the ocean serving as means to produce fresh water supply; each chamber made of transparent glass and/or salt resistant materials, and made long enough to span at least five water wave lengths; each chamber subdivided into sub-chambers by internal cross walls to provide safety and underwater dwelling places; each sub-chamber having air/water inlet and vapor outlet; each chamber closed at one end, the other end being partially open and provided with energy converters positioned facing the ocean waves; each energy converter, some of which being floating pipe oscillators, and air trap chambers wherein the air is trapped and compressed by the water waves getting inside the partially open end of the floating pipe chambers, simulating a blow-hole, serving to drive air/water pumps, vacuum/compression pumps, misting devices, and condensation radiators, inter-connected to function in the desalination process, and further, the energy converters made to drive electric generators; a plurality of structural stiff beams, having an inverted “U” cross section, laid across on the floating evaporation chambers, serving as fastening bars interconnecting the chambers closely, the beams closely assembled together side-by-side forming and serving as a flat floor and to make the whole platform stiff; each structural stiff floor beam made of various kinds of materials, some of which being transparent glass to make the floor into a solar absorbent or into a solar trap deck to warm up the evaporation chambers by solar heat; a layer of fertile soil laid on some parts of the floor for agricultural purposes; a plurality of water pipes laid on the soil, communicated to the water outlet of the desalination apparatus to supply irrigation water to the agri-floor; an up ward perimeter wall, facing the water waves, constructed on the platform to stop the sea water from getting over on the platform; a down ward perimeter underwater wall, facing the water waves, attached to the peripheral edges of the floating platform, serving as a stiff resistor apron made strong to prevent the water waves from getting under the platform; and a plurality of oppositely rotating wideface blade/sail type windmills erected on the ocean floating platform to produce additional energy, see claim 1 and claim 18 of U.S. Pat. No. 5,507,943, Application Ser. No. 811,470, Filed Dec. 18, 1991.
- 32. A spray-mist-evaporation-blower/air-pump-condensation system, that produce humid air and distilled water, in accordance with claim 1,wherein, the desalination vacuum chambers system of claim 1 is further improved by building the chambers underwater as well as floating on water to form a new design for a floating desalination ocean platform to functionally perform as a distillation apparatus in combination with seafood production purposes; wherein, for the same purpose of maximizing utilization, among other distillation components, a plurality of the vacuumed evaporation chambers of claim 1 are closely assembled into a large floating platform assembly; wherein, an underwater anti-oscillation platform is rigidly attached by vertical posts well below the floating platform forming a basement floor made of closely assembled vacuum chambers serving to stabilize the floating platform against the action of the water waves in addition to being vacuum evaporation chambers; and wherein, the chambers are subdivided into sub-chambers by cross walls for safety against leaks and some of the sub-chambers used as dwelling places and offices, the whole floating platform, comprising: a plurality of transparent floating structural vacuum evaporation chambers closely assembled side-by-side by a stiff transparent floor on top of the chambers making the whole floating platform transparent,—to allow sunlight to pass through; a second deck, in the form of a horizontal closely assembled side-by-side pipes serving as vacuum evaporation chambers, disposed underwater below the floating transparent platform, the underwater deck suspended by tie, struts, posts/bars/ropes spacedly attached to the floating chambers; the underwater deck serving as an anti-oscillation resistor against the action of the waves upon the floating platform; a layer of fertile soil, contained in open boxes, deposited on said underwater deck in order to make an underwater agricultural farm; a plurality of various species of underwater plants planted on the underwater farm,—to grow an underwater forest below the transparent platform; a floating enclosure water pond for fish culture attached to a side of the floating platform facing away from the water waves; and a plurality of various species of fishes being introduced to live in the forest,—in order to attract various larger species of fishes to stay around the platform,—in order to attract tourist to visit the platform and enjoy catching large fishes.
- 33. A spray-mist-evaporation-blower/air-pump-condensation system, that produce humid air and distilled water, in accordance with claim 1,wherein, to minimize materials of construction, the vacuum evaporation chamber of claim 1 is further improved to form a new structure for a light weight vacuum evaporation chamber strong against implosion without using salt resistant materials for its main arch action structure, by providing structural interior ribs, interior salt protection curtains in the chamber, and exterior salt protection impervious sheets outside the chamber, wherein, the distillation apparatus of claim 1 is further improved by building each chamber in an erect posture and the misting atomizer nozzles are attached to the highest interior section of each chamber, each chamber made tall enough to provide enough time for the water particles to evaporate while dropping downward in a normal speed in the vacuumed chamber; and wherein, to maximize utilization of the vacuum evaporation chamber of claim 1, the distillation apparatus of claim 1 is further improve to form a new structure that also serve as a floating sea wall, wherein, a plurality of the vertical evaporation chamber are assembled closely side-by-side thru a horizontal frame to form a fence-like wall disposed floating and anchored by kite sling ropes/rods spacedly attached to rocks on the ocean floor to stop the water waves, and to produce a safe harbor; and wherein, some of the chambers are provide with floor, windows, and doors facing away from the water waves to serve as habitable dwelling houses; the new distillation apparatus comprising: a plurality of outer drum/pipe, each drum having a top end and a bottom end, a highest/lowest section, an inside and an outside face, end lips, and made of durable and impervious hard materials; a plurality of impervious protective sheets, durable against salt action, wrapped around or painted on the outside face of each outer drum, a gel coat to mention one paint; a plurality of arch action rib rings, of various styles—one of which is a combination of stacked frustums of drum cones, oppositely attached to one another, and the stacked ribs attached to the inside face of the outer drum, forming a corrugated interior wall; an inner drum, serving as curtain wall/sheet resistant to salt/acid action, attached to the ribs, the ends of which correspondingly attached to the end lips of the outer drum; a weep air hole, in the form of an inverted “U” tube piercing the curtain, provided to equalize pressure on both sides of the curtain; a cover plate, made strong against implosion, having inlets and outlets, attached to each end of the outer drum, and a plurality of misting devices attached to the highest interior section of each chamber; a vacuum/compressor pump having an outlet, and having an inlet communicated with the lowest section of each chamber; a condensation-tube-radiator inside each chamber, having an inlet communicated to the outlet of the compressor; and each radiator having an outlet communicated with the inlet of the clean drinking water tank which has tiny bubble releasing perforated tubes as in claim 1.
- 34. A spray-mist-evaporation-blower/air-pump-condensation system, that produce humid air and distilled water, in accordance with claim 1,wherein, to minimized cost of construction, there being abundant glass sand around the world as a cheap material resistant to the corrosive action of salt, various acids, and volcanic steam, the distillation apparatus of claim 1 is further improved, by using glass serving as a material for various constructions, and fabrications, in which case, the vacuum evaporation chamber, the vacuum/compressor pumps, the heat exchange radiators, the water tanks, the tubes/pipes, pipe fittings/connectors, drive gears, drive pulleys, drive shafts, turbine blades, mechanical bearings, mechanical valves, posts, footing piles, tension ropes, structural supports, and other components for the complete construction of the apparatus of claim 1 are made/formed out of glass, thereby creating a new use and a new application for glass for the various needs of man; wherein, the glass vacuum evaporation chambers of claim 1 are assembled in the form of floating structures serving as footings for habitation buildings erected floating out on the ocean; wherein, in trying to harness volcanic heat energy to heat up water for evaporation in the chambers of claim 1, the pipes and fittings inserted into a geothermal well to conduct volcanic steam are made/formed out of glass; wherein, in trying to harness solar energy to heat up water for evaporation in the chambers of claim 1, the roofs and structures of houses, habitable buildings power plants, factories, and chemical plants are made/form out of glass in the efforts to form solar traps in the buildings and to form heat insulators in the buildings; and wherein, in the efforts to use a durable material, various building structural parts, water pipes, water tanks, sewer/brine pipes, sewer pumps, pumps for chemicals, and mechanical parts, to meet the needs of man, are made/formed out of glass, in efforts to protect the distilled water in the production and distribution facilities.
- 35. The distillation system/apparatus of claim 1, further improved including a new condensation system for producing distilled water out of the vapor/fog/clouds, wherein, a plurality of cold plates and tube coils are spacedly assemble into the air supported by structures in a passage of the vapor/fog/clouds so that the vapor condenses freely upon touching the plates, a water gutter is attached to the bottom of each plate, and a pipe line interconnects all gutters collecting all the water into a container, and wherein, to speed up condensation, the plates are improve by attaching cold refrigerating tube coils to each plate.
- 36. The desalination/distillation apparatus of claim 1,wherein, to maximize utilization of the vacuum evaporation chamber of claim 1, the chamber is further improved by making it: out of glass, longer, larger in diameter, submerged/floated on the ocean, and subdivided into sub-chambers by cross walls so that some of the sub-chambers have alternative uses/functions aside from being an evaporation chamber, some uses are: a residential house, a potable water tank, a sea water tank, a compressed air tank, an oxygen tank, a fuel tank, a machinery chamber, an engine room, a pressurized landing porch, and aquarium for live fish, to name a few, the sub-chambers intercommunicated by lock doors on the cross walls and further intercommunicated by pipes; wherein, both ends of the chamber is made pointed and an underwater directional propeller is mechanically/functionally connected to an engine inside the engine room at one end of the chamber, so that the chamber serves as a mobile home, and also serves as an underwater submarine transportation for: people, live fish, potable water, fuel, and other merchandise, to name a few cargo; wherein, an air pump is installed in one sub-chamber, communicated with the compressed air tank serving to inject compressed air into the sea water tank to float the whole chamber, and to withdraw compressed air from the sea water tank to submerge the whole chamber, the air pump further serves to circulate/supply fresh air into the house, into the landing port, into the engine room, into the machinery room and into all the sub-chambers thru air ducts communicated to the air above the ocean; wherein, a plurality of anchor connectors are attached to the bottom of the chamber and connected by ropes to anchor rocks on the ocean floor; and wherein, the vacuum chamber also serves as a fishing boat and a fishing submarine decorated with scales, fins and with a caudal tail and formed into a mechanical fish.
- 37. The evaporation/condensation chamber of claim 1 further improved by sub-chambers made habitable with oxygen supply, and decorated with scales, fins and with a high power mechanical caudal tail propeller, in order to serve as water transportation and a mobile house, in order to maximize utilization of the chamber.
- 38. The evaporation/condensation chamber of claim 1 further improved by sub-chambers made habitable with oxygen supply, and decorated by scales, fins and a mechanical caudal tail propeller, having: a head serving as driver compartment, a plurality of wheels attached to and carrying the fish, an engine attached to the fish and mechanically connected to the wheels controlled by the driver, and the apparatus used as land transportation for people and for live fish wherein most part of it is in the form an aquarium, in the effort to maximize utilization of the chamber.
- 39. The evaporation chamber and condensation apparatus of claim 1 further improved by incorporating a new design of smokeless trash incinerator system, wherein the trash is burned from the top, to heat up the vacuum chamber, to heat up the water being evaporated and to heat up the compressed air used to blow out the atomizer nozzles, the trash incinerator comprising:a chimney vertically disposed below the vacuum chamber, having: a bottom covered/closed by a bottom plate, a top covered/closed by a top plate, an upper ¼ point, a bottom section, a top section pierced up into the front section of the vacuum chamber, and a bottom section main inlet door having an upper and a lower lips; a trash burning chamber with a rear end horizontally communicated to, and thru the bottom section inlet door of, the chimney, having: a high ceiling with a plurality of fresh air downward nipples, an upper front end fresh air entrance gate with a throttle, a lower front end, and a smooth floor thru which the trash slides to the rear; a plurality of fresh air supply perforated pipes/nipples attached to and piercing the ceiling of the burning chamber, each nipple having an upper end open and a lower end open, serving to oxidized gas fumes on the trash and fumes rising up the ceiling; the ceiling of the burning chamber made high enough to accommodate a good length of the nipples from the ceiling going downward near and above the burning trash, to provide sufficient time heating up the oxidation fresh air; the upper lip of the main inlet door at bottom section of the chimney being lower than the ceiling of the burning chamber, serving to trap the rising gas fumes to the ceiling thereby providing time for complete oxidation; an ash outlet downward pipe piercing thru the bottom cover plate of the chimney, disposed at the rear end of the burning chamber, having a couple of control valves; a trash feeder smooth horizontal elongated chamber having a rear end communicated to the lower front end of, and delivering trash into, the burning chamber, having a front open end, a front section, a ceiling, a straight smooth floor, and a midsection; a trash receptacle/bin having an open top, having an open bottom communicated to and thru an opening on the ceiling of the midsection of the trash feeder chamber, and having a rear bottom lip lower than the ceiling of the feeder chamber; an elongated piston, tight fitted into the trash feeder chamber, having wheels resting on the trash feeder floor, and a head end facing the trash; a hard metal sharp edge piston ring serving as cutting share blade/die attached to the head end of the piston; a hard metal sharp edge share die attached to the lower rear lip of the bin; a vertical enclosure pre-heating pipe surrounding the chimney, made large enough to provide air duct space created between the chimney and the enclosure pipe, having: a lower end section, a closed top end connected to and sealed air-tight with the upper ¼ point of the chimney, and an open bottom end main fresh air entrance lower than the burning chamber; a vertical subdivision wall air tightly inter-connecting the chimney with the enclosure pipe on opposite sides of the chimney, effectively dividing the fresh air supply duct into two and forcing the fresh air to travel up and down the chimney sides; a horizontal box enclosure air-tightly connected to and communicated with the lower end section of the vertical enclosure pipe, serving as roof and side wall heat insulator for the burning chamber, made large enough thereby creating a fresh supply air passage over and around the burning chamber; a vertical wall sealing the front end of the horizontal box enclosure, spacedly enclosing the throttle valve, and air-tightly connected around the feeding chamber; an internal vertical chimney inside the vacuum chamber, having a closed bottom section and an open top end pierced up thru the ceiling of the vacuum chamber; a plurality of heating radiator tubes inside the chamber, piercing and inter-communicating the top section of the chimney with the bottom section of the internal chimney; a vertical box chimney disposed above the chamber, having a top and a bottom cover plates, made proportionally thin and horizontally wide, communicated with the open top end of the internal chimney, having: multilevel subdivision floors forming a horizontal zigzag chimney, and a straight upright pipe waste hot air outlet chimney; a couple of air/water pipes installed bend following the zigzag chimney for heating up the water and the compressed air which finally exit as hot water mist thru the atomizer nozzles, to speed up evaporation in the vacuum chamber; and the chimney having perforations on ½ side facing the downward fresh air supply duct.
1. CROSS REFERENCES
A.—This is the final application filing for the provisional application No. 60/058,062, dated Sep. 5, 1997; Foreign Filing License Feb. 11, 1998
B.—This is a Continuation-in-Part of:
a. Appl. Ser. No. 07/811,470—Dec. 18, 1991—U.S. Pat. No. 5,507,943; attention to Claim-1, Claim-12, Claim-13, Claim-16;
b. Appl. No. 07/255,657—Oct. 13, 1988—U.S. Pat. No. 5,056,447; attention to Configuration #17 of summary;
c. Appl. No. 60/058,062—Sep. 5, 1997—Provisional Application; With Foreign Filing License Granted Feb. 11, 1998;—to establish Priority Date; and
d. Appl. Ser. No. 08/999,729—date filed Dec. 23, 1997—opposite turbine.
US Referenced Citations (5)
Provisional Applications (1)
|
Number |
Date |
Country |
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60/058062 |
Sep 1997 |
US |
Continuation in Parts (3)
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Number |
Date |
Country |
Parent |
08/999729 |
Dec 1997 |
US |
Child |
09/137499 |
|
US |
Parent |
07/811470 |
Dec 1991 |
US |
Child |
08/999729 |
|
US |
Parent |
07/255657 |
Oct 1988 |
US |
Child |
07/811470 |
|
US |