Claims
- 1. A water distillation apparatus comprising:
a. a first thermally conductive evaporation member having a first end and a second end, the first end being disposed at a higher altitude than the second end, such that water can gravity flow down said first evaporation member; b. a first water inlet proximate the first end of said first evaporation member, wherein the first water inlet is configured to receive water from a water source and to provide a flow of water down said first evaporation member; c. a first heating apparatus configured to impart heat into the water flowing down said first evaporation member, thereby converting at least a portion of said water into water vapor; d. a first water outlet proximate the second end of the first evaporation member for draining the water from the second end of the first evaporation member; and, e. a first steam drum in communication with said heating apparatus for condensing said water vapor into fresh water.
- 2. The water distillation apparatus of claim 1 wherein said first evaporation member comprises a plurality of thermally conductive tubes.
- 3. The water distillation apparatus of claim 2 wherein said thermally conductive tubes are in thermal communication with a heat conductive plate.
- 4. The water distillation apparatus of claim 1 wherein said first evaporation member comprises a an enclosed housing that includes a floor member and an overlying cover.
- 5. The water distillation apparatus of clm 4 wherein said heating apparatus directs heating energy to at least said floor member.
- 6. The water distillation apparatus of claim 1 wherein the first heating apparatus comprises a light focusing member configured to direct light onto a surface of said first evaporation member.
- 7. The water distillation apparatus of claim 4 wherein the first heating apparatus further comprises a light focusing member configured to direct light onto said housing.
- 8. The water distillation apparatus of claim 4 wherein said floor member has a geometric shape that induces splashing of said water against said cover as said water flows across said floor member.
- 9. The water distillation apparatus of claim 6 further comprising a supplemental heating source located adjacent said first evaporation member.
- 10. The water distillation apparatus of claim 9 wherein said first heating source comprises a light focusing member that directs light onto a surface of said first evaporation member and said supplemental heating source is movable between a first and second position, wherein said first position is suitable for imparting heat to said first evaporation member, and said second position is configured to minimize interruption of said light directed to said first evaporation member.
- 11. The water distillation apparatus of claim 10 wherein an amount of heat produced by said supplemental heating source is controllable.
- 12. The water distillation apparatus of claim 1 further comprising a controller for controlling an amount of said water supplied to the first water inlet.
- 13. The water distillation apparatus of claim 5 further comprising a second evaporation member coupled to said first evaporation member.
- 14. The water distillation apparatus of claim 13 wherein said second evaporative member has an inlet and wherein said water from said first water outlet is channeled into said inlet.
- 15. The water distillation apparatus of claim 14 wherein said first evaporation member and said second evaporation member are oriented on a common geometric plane.
- 16. The water distillation apparatus of claim 15 further comprising a second steam drum having an upper end, wherein said first steam drum is oriented proximate the first end of said first evaporation member, and said second steam drum is oriented proximate said upper end.
- 17. The water distillation apparatus of claim 1 further comprising a filtering station coupled to said first steam drum, wherein said water vapor entering said first steam drum is condensed into distilled water and channeled through said filtering station.
- 18. An assembly for distilling raw water comprising:
a. at least one upwardly inclined steam generating means for converting said raw water to steam, said steam generating means having an upper section, a midsection and a lower section; b. an upper manifold in communication with said upper section; c. a lower manifold in communication with said mid-section; d. a steam drum having a drum interior containing cooling means for condensing said steam to distilled water, said cooling means in communication with said raw water, having a raw water outlet in communication with said upper manifold; e. a distilled water container in communication with said drum interior; f. a drain water accumulator in communication with said lower section; and, g. a solar radiation focusing means for directing solar radiation onto said steam generating means.
- 19. The assembly of claim 18 wherein said steam generating means comprises elongated tubes constructed of heat conductive material.
- 20. The assembly of claim 19 wherein said steam-generating means includes a heat conductive plate adjacent said elongated tubes.
- 21. The assembly of claim 20 wherein said focusing means comprises an array of magnifying lenses positioned adjacent said elongated tubes.
- 22. The assembly of claim 18, wherein said steam generating means comprises an enclosed housing comprising a floor member and an overlying cover interconnected with side walls.
- 23. The assembly of claim 22 wherein said mid-section comprises the mid-portion of said housing, including a vapor baffle extending across said mid-portion to divide said housing into an upper heating chamber and a lower heating chamber, said lower heating chamber having an interior vapor space with a lower steam drum adjacent said vapor baffle in communication with said interior vapor space.
- 24. The assembly of claim 23 wherein said upper manifold and said lower manifold are in fluid communication with each other.
- 25. The assembly of claim 22 wherein said floor member and said overlying cover are constructed of any one or combination of a member selected from the group consisting of, corrugated sheet material, dimpled sheet material, sheet material embossed with geometric shapes, sheet material having an irregular upraised surfaces.
- 26. The assembly of claim 18 wherein said steam generating means has an upper side and an underside, said focusing means comprising an adjustable concave mirror for directing solar radiation to said underside, and an array of magnifying lenses for directing solar radiation to said upper side.
- 27. A method of distilling raw water, the method comprising the steps:
a. flowing said raw water through a first heating chamber; b. heating the first heating chamber by focusing sunlight on said first heating chamber with a first optical member; c. vaporizing a portion of said raw water into steam by flowing through said first heating chamber; d. collecting a portion of said steam within a first steam drum; e. condensing the water vapor into condensate; and, f. collecting said steam within a collection chamber.
- 28. The method according to claim 27 wherein said heating chamber comprises a heat conductive tube.
- 29. The method according to claim 27 wherein said heating chamber comprises a floor and cover interconnected by side walls.
- 30. The method according to claim 27 wherein said first optical member comprises a mirror, and wherein the step of directing sunlight on said first heating chamber comprises the step of directing sunlight onto a surface of the floor.
- 31. The method according to claim 30 further comprising the step of focusing light onto said cover with a second optical member.
- 32. The method according to claim 30 further comprising the steps:
a. flowing raw water through a second heating chamber comprising a second floor and cover interconnected by side walls; b. heating said second heating chamber by directing sunlight on said second heating chamber; c. vaporizing a portion of said raw water flowing through said second heating chamber, thereby forming water vapor; d. collecting a portion of said water vapor from said second heating chamber within a second steam drum; e. condensing said water vapor within said second steam drum into condensate; and f. collecting the condensate from the second steam drum within said collection chamber.
- 33. The method according to claim 32 wherein said floor of the first heating chamber and said second floor are oriented on a common plane.
- 34. The method according to claim 33 further comprising the step of directing water from a lower level of said first heating chamber to an upper level of said second heating chamber.
- 35. The method according to claim 34 further comprising the steps:
a. directing light onto said first heating chamber with a second optical member; and b. directing light onto a surface of the top of said second heating chamber with a third optical member.
- 36. The method according to claim 34 wherein said second optical member comprises at least one lens.
- 37. The method according to claim 33 wherein said floor of the first heating chamber and said second floor comprise a contiguous surface.
- 38. The method according to claim 33 comprising a vapor barrier between said first heating chamber and said second heating chamber, the method further comprising the steps of:
a. restricting water vapor flow from said second heating chamber to said first heating chamber; and b. restricting water vapor flow from said first heating chamber to said second heating chamber.
- 39. The method according to claim 38 wherein said vapor barrier fully separates said first heating chamber and said second heating chamber, the method further comprising the step of restricting a flow of water between said first and second heating chambers.
- 40. The method according to claim 27 wherein the step of condensing the water vapor into condensate comprises the steps of:
a. flowing raw water through a cooling channel within the steam drum; and b. flowing said water vapor against said cooling channel.
- 41. The method according to claim 30 wherein said mirror comprises a curved surface, the method further comprising the step of adjusting an angle of the mirror according to positions of the sun.
Parent Case Info
[0001] This application claims priority from Provisional Application No. 60/345,486, filed Jan. 7, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60345486 |
Jan 2002 |
US |