Claims
- 1. A vaporization/pressurization module comprising:a porous member composed of a material having a thermal conductivity of less than 10 W/m K and having a liquid feed surface, a liquid vaporization zone, a vapor release surface generally opposite the liquid feed surface, and sidewalls; a heat source in thermal communication with the porous member; and a substantially vapor impermeable barrier contacting the porous member sidewalls and in proximity to the porous member vapor release surface, the substantially vapor impermeable barrier having one or more vapor permeable locations permitting egress of pressurized vapor.
- 2. A vaporization/pressurization module according to claim 1, wherein, the one or more vapor permeable locations permitting egress of pressurized vapor further comprises an adjustment feature to provide controllable vapor release.
- 3. A vaporization/pressurization module according to claim 1, wherein, the one or more vapor permeable locations comprise less than about 5% of the surface area of the substantially vapor impermeable barrier.
- 4. A vaporization/pressurization module according to claim 1, wherein the substantially vapor impermeable barrier comprises a vapor impermeable shroud contacting the porous member sidewalls and an aperture plate having one or more vapor permeable apertures in proximity to the porous member vapor release surface, and wherein said vapor impermeable shroud has a thermal conductivity of less than 200 W/m K.
- 5. A vaporization/pressurization module Comprising:a porous member comprising a ceramic material having a substantially uniform small pore size, the porous member having a liquid feed surface, a liquid vaporization zone, a vapor release surface generally opposite the liquid feed surface, and sidewalls; a heat source in thermal communication with the porous member; and a substantially vapor impermeable barrier contacting the porous member sidewalls and in proximity to the porous member vapor release surface, the substantially vapor impermeable barrier having one or more vapor permeable locations permitting egress of pressurized vapor.
- 6. A vaporization/pressurization module comprising:a porous member comprising a material having a low thermal conductivity and an average pore size of from 0.5 to 5 microns, the porous member having a liquid feed surface, a liquid vaporization zone, a vapor release surface generally opposite the liquid feed surface, and sidewalls; a heat source in thermal communication with the porous member; and a substantially vapor impermeable barrier contacting the porous member sidewalls and in proximity to the porous member vapor release surface, the substantially vapor impermeable barrier having one or more vapor permeable locations permitting egress of pressurized vapor.
- 7. A vaporization/pressurization module according to any of claims 1, 5 or 6, wherein the material comprising the porous member has an average pore size of from 0.10 to 30 microns.
- 8. A vaporization/pressurization module according to claim 1 or 5, wherein the porous member has an average pore size of from 0.5 to 5 microns.
- 9. A vaporization/pressurization module according to any of claim 1, 5 or 6, wherein the porous member has a composite construction and comprises materials having different thermal conductivities.
- 10. A vaporization/pressurization module according to any of claims 1, 5 or 6, additionally comprising a resistive heating element provided in proximity to a vaporization zone of the porous.
- 11. A vaporization/pressurization module according to any of claims 1, 5 or 6, wherein the porous member is cylindrical.
- 12. A combustion apparatus comprising the vaporization/pressurization module of any of claims 1, 5 or 6, and additionally comprising a liquid fuel reservoir and a liquid feed system for providing liquid fuel to the liquid feed surface of the porous member.
- 13. A combustion apparatus according to claim 12, wherein the liquid fuel reservoir is vented so that the pressure in the liquid fuel reservoir during combustion is equalized with ambient pressure.
- 14. A combustion apparatus according to claim 12, wherein the liquid fuel reservoir is cylindrical.
- 15. A combustion apparatus according to claim 12, wherein the liquid feed system is a capillary feed system.
- 16. A combustion apparatus according to claim 12, wherein the capillary feed system comprises an absorbent, porous material having a pore size larger than the pore size of the porous member.
- 17. A combustion apparatus according to claim 12, additionally comprising a hot seat assembly constructed from a vapor permeable material mounted in proximity to and in thermal communication with the vapor release surface of the porous member.
- 18. A combustion apparatus according to claim 12, additionally comprising a burner assembly providing at least one chamber for mixing a combustible gas with vaporized fuel.
- 19. A combustion apparatus according to claim 12, wherein the burner assembly is in thermal communication with the hot seat assembly by means of heat conductive posts.
- 20. A combustion apparatus according to claim 12, additionally comprising an adjustment mechanism for modulatiing the flow of vaporized and pressurized fuel into the burner assembly.
- 21. A combustion apparatus according to claim 12, additionally comprising an adjustment mechanism for modulating the heat flux in the combustion apparatus.
CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation of U.S. patent application Ser. No. 08/899,181, filed Jul. 23, 1997, U.S. Pat. No. 6,162,046 which is a continuation-in-part of U.S. patent application Ser. No. 08/439,093, filed May 10, 1995, now issued as U.S. Pat. No. 5,692,095, and are incorporated herein by reference.
US Referenced Citations (20)
Continuations (1)
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08/899181 |
Jul 1997 |
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09/654659 |
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Continuation in Parts (1)
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08/439093 |
May 1995 |
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08/899181 |
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