Non Applicable
Non Applicable
1. Field of the Invention
This application relates to a hybrid energy system comprising collaborating kinetic energy turbine systems, turbine valves and pipes, solar power and piezoelectric devices which generate substantially more electricity at the same site, and also network controllers manage the electricity power on site and off site accordingly.
2. Description of the Related Art
As related art discloses, it is generally well known that there are wind turbines, hydroelectric turbines, piezoelectric systems and solar energy systems that are placed individually at a setting to generate electricity power. For example, related art discusses a giant wind turbine which requires about thirty acres and does not include a secondary power generating system on the same site. Wind turbine farm are not designed to allow a second, a third and even a forth system which is inefficient, and also waste resources.
More specifically, the present kinetic energy system application discloses more than two energy producing methods on the same site and vehicle. A preferred site comprises an assortment of electric generating devices to partner and make more power together which is sensible and profitable. Related art does not discuss a preferred site which using power production methods by partnering on the same site or vehicle hydroelectric turbines, kinetic energy turbine valves for infrastructure pipelines, portable modular solar stacking awning, giant wind turbines that support solar power panels. Nor does related art discuss using kinetic energy pipe inserts which include piezoelectric generating devices with an internal controller. More so, the application discloses a novel network control system to manage battery storage containers delivered by autonomous hybrid service vehicles and also off shore hybrid power vessels with docking submarine.
Furthermore a factory employing a hybrid energy system on site increases energy power production most efficiently compared to a factory without a hybrid energy system. In particular, employing a hybrid energy system to power machines reduces grid energy and production cost. A hybrid vehicle and a hybrid vessel generates electricity effectively and thus extends long range mileage, and generates surplus power to store in battery banks for network consignment. Plausibly, a novel hybrid airplane can extend flight mileage by using corresponding sets of jumbo jet engines to work in conjunction with sets of electric turbine motors. The application discloses novel methods for hybrid mass transit rail and the infrastructure to power the rail system as well as other novel renewable energy production methods and productive hybrid energy solutions.
A Hybrid Energy System utilizes more than one electric energy generating method at the same site. A hybrid energy system site employs all types of on site machines, equipment and fabrication systems having forced matter and pressurized pipes systems. A hybrid energy system kinetic energy turbine is diversely portable and modular and integrates on rooftops, skyscrapers, bridges, tunnels and on freeway overpasses, and also underpasses, in rivers and stream and in aqueducts. Wherewithal, a business enterprise can employ a hybrid energy system comprising kinetic energy turbines and turbine valves which are activated by the flow of liquid, solid and gaseous matter.
A business or a preferred site may incorporate any and all of the following hybrid system energy producing components such as; piezoelectric valves and hydro-piezoelectric power generating devices, piezoelectric wind panels and solar power panels to work in conjunction with each other to generate substantially more power on the same site. The said hybrid energy components all comprise a controller with sensor array to manage the hybrid device on site, and also the controller communicates the operation status with the utility company headquarters mainframe. A hybrid energy system controller manages the AC or DC power to charge battery banks on site. The hybrid energy system controller also shunts electricity power to the grid via on and off shore transmission cable network.
Hereinafter, a hybrid energy system will be described in details with reference to the drawings and the identical parts in the drawings are assigned the same reference numerals.
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The valve device 12A is shown at a side angle and couples with a pipeline 41 and power cable 6 and 49 subsequently connects accordingly. The valve device 12A does not include a controlled valve gasket 17.
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A generator array with blades 18, having a surface coating that repels organism growth and plausible blades may have a tactile shark scale texturing. Configuration 12C-12E illustrates various methods which integrate at least one kinetic energy turbine valve with three generators in the array, and accordingly more turbine generator can be added to increase energy production. As illustrated matter is a force substance in
A conveyer system 19 allows matter flow to spill out onto the vent guard and fall onto blades. A debris claw 20 allows forced matter and ingredient substance 21 to dump out onto blades and fall though to exit downwardly.
A preferred hybrid energy system pipe line may have pumped in or pumped out pressurized gases, liquids and also non-inert matter that spews and pours undulating heavy duty turbine blades. A controller monitors this process until halted by controller mode off switch.
As well, preferred sites may select to utilize turbine valves which are activated by forced steam, liquid, dry matter and debris. A conveyer 19 and a debris claw 20 forcefully topples matter 21 which undulates the piezoelectric panel 22 set under the said conveyer belt to generate electricity. Each turbine blade is activate and thus via rod or shaft cranks generator rotors and this process is repeated until halted by controller mode off switch.
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A kinetic energy method comprising various piezoelectric devices can be activated by wind, water, also by pressurized force. As well, said piezoelectric devices work in novel applications such as set inside pressurized pipes, and inside a vented housing, and also in pipelines placed wherever. A building with air ducts and an air conditioning system can integrate the said piezoelectric array to generate electricity power, and also wire 6 connects to control system sensors placed where ever suited to see the an activity is being carried out.
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A portable wind turbine power system 26 includes a collapsing handle 27, at least two 12V batteries 28a, 28b, and a portable battery caddy 29 with controller having GPS 13 with cable plug, outlet and in let, and also wire 6 arrays with sensors.
A modular hybrid solar power stand or wind turbine telescope device 30 includes a solar panel 31 or film layer, and a motorized swivel device with microchip control 32, and an optional actuating telescoping device 33.
A modular hybrid solar power and wind turbine array 30 is a pole having a motorized telescope device 33 which sets as a pinnacle, and also sets on a vehicle roof when parked.
A portable tri pod stand 34 supporting a wind turbine power system 26 is including a solar panel 31 that snaps on and off, at least two 12V batteries 28a, 28b, and having a preferred anchoring method.
A stackable modular awning 35 is set to piggy back which exposes solar panels better, as well as allows concentrated wind speed to contact wind turbines 11Ca-11Cd.
A plurality of said modular awnings 35 are to set on the ground, as well as to set on the roof of a skyscraper, a building, and on land turbine farms also, wherever else suited.
Various portable wind turbine units may or may not include a portable snap on solar power device that can comprise a controlled motor with sensors to automatically adjust by actuating to tilt and swivel into the direction of the sun.
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A hybrid building 36 includes a wind turbine array 11Ca-11Ch, and solar power panels 31.
A giant wind turbine farm can employ wind turbine array supported by giant towers. The wind turbine farm may be set on and off shore.
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The configuration for a pipeline 41 is shown integrating turbine valves 17a, 17b, and piezoelectric pipe inserts 25, and system pipe 14 without a device. The pipe is housed underground or is housed on a preferred site such as at a factory supplied by pipeline systems.
The underground pipeline harnesses the insulated wire 6 and sensor array, not shown. The pipeline 41 also accommodates and houses underground network power grid cable 49.
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A vent guard 16 allows the maintenance worker access and also is eco friendlier for fish. The generators are set on the internal side 15 and the water flow 45 is channeled to turn the hydroelectric turbine generators and blades 18a-18f and also more blade types.
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The internal structure 15 on right or 15 on left allows the maintenance worker access and also a vent guard is set vertically at the aqueduct entrance. The generators are set on the internal side 15 and the water flow 45 is channeled to turn the hydroelectric turbine generators and blades 18a-18f and many more blade types.
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A control system 13 sends surplus energy to on site electrical components and can shunt extra power to the grid. A hydroelectric aqueduct can be dams and spillways above ground and also tunneled underground. A hydroelectric turbine array can be set on a beach to capture wave and tide force.
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A hybrid vessel or barge 51 also includes a wind turbine array 39a-39f and solar power panels, and also the motorized tower 31a-31f, hydroelectric turbine housing 54a 54f with 11a-11r which is towed, and vent guard 16 protect the propeller 56, and also insulated wire 6 and cable 49 subsequently connects with network grid cable 50. A control system 13 sends surplus energy to on site electrical components and can shunt extra power to the grid.
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A hybrid energy system comprising novel hydroelectric mega vessels can float an off shore, and comprising a utility grid transmission system which stores kilowatts in battery containers and battery pods to consign later on.
An off shore grid network comprising a grid transmission network control system which collaborates with said mega vessels and barges to stock pile voltage onboard in a battery said container, and also controls the container devices pending outcrop shipment.
Also shipping said battery containers to utility grid companies and businesses on shore and to cruise lines for emergency power.
An off shore grid company transmits electrical energy underground sea to shore cable system to distribute net power on shore accordingly. A mega vessel garages a novel hybrid submarine which is employed for underwater hydroelectric power system monitoring and maintenance. An off shore headquarters 53 and an off shore power plant system 52 having various hybrid energy devices sharkskin surface or repellant coating 23, piezoelectric array 24, hybrid solar power and wind turbine telescope device 30, stacking kinetic energy turbine array 39, floating buoy tower 48, charging store 64, and also with insulated cable and plug 49 which subsequently connects with network grid cable 50.
A submarine vessel 55 with an electric motor 56 is power by an external hydroelectric turbine and surfaces to dock on the station 52. The sub vessel 55 maintenances the turbine farm with robotic armature 1a, 1b is shown to be clasping on to turbine 11D underneath the sub vessel 55 which operates to install aforesaid devices on and below the ocean surface.
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A hybrid energy system controller manages multiple power production systems on site and automatically shuts down power production to prevent overload. A control system 13 sends surplus energy to on site electrical components and can shunt extra power to the grid.
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The tunnel lights and pumps are powered by generators and piezoelectric devices activated by kinetic energy air turbulent. The electric cars 68a-68c show the portable wind turbine unit 26 is set inside the front boot to extend long range mileage.
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A hybrid energy commercial vehicle and service stations can ship transportation-all generated power to rural and metro homes, buildings, and to communities on and off grid power. Accordingly a vehicle type can utilize the renewable energy power system and wind turbine apparatus in various ways for consumer applications and electrical components in doors and out.
One or more wind turbine apparatus can be anchored in any given manner with and with out a vented housing, and placed accordingly such as horizontally or perpendicularly, to stack, or be in a group alignment inside and outside the vehicle cab and vehicle body as shown with utility vehicle 65 and commercial vehicle 70.
A kinetic energy power service station 61 can be situated over an underground water treatment plant and pipe network system 41 with valves 11a, 11b, and also wind and solar array solar panel or film 31, motorized rotational device 32, actuator telescoping device 33, tri pod 39 and a giant tower 40. As well, the station is self service store 64 which houses the battery 67. The station is self service store 64 also stores and sells portable charge containers 67 which can be consigned by a business to charge employees vehicle's at work and thus container remains on site until nearly spent upon the next replacement scheduling via automated control system 62 with payment such as a Pay Pal system.
An automated control system 62 and payment system, and a plug-in charge port 63a, 63c, and provide as service application by shipping and delivering, exchanging and recycling spent battery's for fully charged batteries.
As shown, a utility vehicle 65 provides a service which is on call or via an appointment in order to charge and recycle spent electric vehicle batteries as the depictions shown the car 68 is being charge in a parking lot as controller 62 automatically manages charge plug in portal 63, and also battery 67 storage level.
As shown, a kinetic energy power service utility trailer 66 delivers a fully charged battery container to homes, businesses, and also does not discuss hospitals and when power is nearly depleted the hybrid energy controller 62 automatically schedules a time to delivery a fully charged battery container 67.
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Accordingly a vehicle type can utilize the renewable energy power system and wind turbine apparatus 11a-11f. In various ways for consumer applications such as shipping and delivering, exchanging and recycling spent battery's for fully charged batteries 81a-81e.
The vehicle may or may not include the piezoelectric flag 33 or the solar panel 31. An automated control system 62 and payment system to plug-in charge port 63a, 63c.
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A controller manages a telescoping actuator that opens a door hatch 33 (depicted by arrow) allows piezo-flag 23 to pop out, and when parked to lower back down and shut the door hatch. A vehicle type may or may not include the door hatch device 33 to rise up and out. The hand held remote controller 72 acts as a steering wheel and a foot pedal stops the omniwheel 73.
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As shown, a motorcycle 74 is a utility terrain vehicle and a cart too that can employ at least one or more wind turbine apparatus 11A. A vehicle controller 13 can furnish KES voltage to motor(s) and components inside and outside the vehicle body and extends an electric vehicle's long range mileage until parked for battery recharging process. The motorcycle may or may not include piezo-flag 24.
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Plausibly wind turbines 11a-11i and piezoelectric devices 24a-24f can be towed in the air to produce hybrid energy for buildings, and also is commercial renewable energy source to power homes, businesses via cable line 49.
An autonomous cart base 84 comprising omniwheel motorized casters 85, a controller 86 charger and gauge 87, in source 88 and outsource power outlet 89, and battery housing 90, an autonomous carrier 91 with door hatch controller 92 is mobile. While parked an autonomous carrier 91 receives instructions from said controller 82 to open the door hatch 92.
The autonomous cart controller shunts helium from tank 82 and inflates the balloon 81 and as said balloon 81 fills it ascends up and out of the autonomous carrier compartment 91. The piezoelectric inflatable power wire harness 83 ascends as well piezoelectric devices 24a-24f ascend.
Kinetic wind activates piezoelectric devices 24a-24f and produces hybrid energy and thus, a controller 86 charger manages voltage and shunts voltage to autonomous cart 84 batteries 28. During this charging activity this autonomous carrier 91 receives instructions from said controller 82 to close the door hatch 92 until battery if fully charged afterwards the helium tank autonomously shuts off via controller 82 and said balloon 81 deflates.
An autonomous cart base 84 comprising omniwheel motorized casters 85 is instructed via controller to shut down. The balloon is gathered by a maintenance worker and thus process is repeated.
The abovementioned as specified in generic terms may not be technologically precise and most of the devices and components can be purchased on the marketplace. It is apparent to those skilled in the art that many more entailed nuances are possible within the scope of the invention.