Claims
- 1. An apparatus for exchanging heat between two fluids comprising:
- a plurality of elongated tubes for carrying a first fluid, each tube having a first end and a second end and being formed of a thermally conductive fiber-reinforced polymer matrix material having corrosion resistance and erosion resistance properties;
- a shell means for housing said tubes and for establishing a flow path for a second fluid, said shell means comprising a first tubular member and a second tubular member, each of said tubular members having an inlet end region, an outlet end region and an intermediate region therebetween, said first tubular member being concentrically disposed within said second tubular member, wherein each of said tubular members formed of a thermally insulating fiber-reinforced polymer material having corrosion and erosion resistance properties;
- a first transverse member coupled to said inlet end regions of said tubular members for supporting the first end of each tube, said first transverse member defining a plurality of apertures for receiving a respective first end of a tube and being formed of a thermally insulating cotton reinforced phenolic resin material having corrosion and erosion resistance properties; and
- a second transverse member coupled to said outlet end regions of said tubular members for supporting the second end of each tube, said second transverse member defining a plurality of apertures for receiving a respective second end of a tube and being formed of said thermally insulating cotton reinforced phenolic resin material.
- 2. The apparatus of claim 1, wherein said thermally conductive material comprises titanium.
- 3. The apparatus of claim 1, wherein said thermally conductive fiber-reinforced polymer matrix material comprises filament wound carbon fibers in an epoxy resin matrix.
- 4. The apparatus of claim 1, wherein said thermally conductive material comprises a sintered-alpha silicon carbide ceramic.
- 5. The apparatus of claim 1, wherein the first end of each tube is secured within a respective aperture of said first transverse member by an epoxy adhesive.
- 6. The apparatus of claim 1, further comprising a plurality of adaptors, each adaptor having a first end for receiving the second end of a tube and a second end for engagement with an aperture of said second transverse member, wherein an outer surface of said first end of each adaptor is adhesively bonded to an interior surface of said second end of each tube.
- 7. The apparatus of claim 6, wherein said adaptors are formed of said thermally insulating cotton reinforced phenolic resin material.
- 8. The apparatus of claim 7, wherein each of said adaptors comprises a tubular member having an outer surface and further wherein said second end of each adaptor includes means for creating a seal between said outer surface and said second transverse member, said outer surface defining an annular groove for receiving said seal creating means.
- 9. The apparatus of claim 1, further comprising intermediate support means disposed between adjacent tubes and defining a serpentine flow path between said tubes, said intermediate support means being formed of a thermoplastic material having corrosion and erosion resistance properties.
- 10. The apparatus of claim 1, wherein said thermally insulating fiber-reinforced polymer material of said first and second tubular members is a silica reinforced phenolic resin material.
- 11. The apparatus of claim 1, wherein said first and second tubular members each have walls defining interior and exterior surfaces, said second tubular member having a uniform inner diameter corresponding to said interior surface, said first tubular member having an outer diameter at said intermediate region equal to said inner diameter of said second tubular member and further having reduced outer diameters at said inlet and outlet end regions such that the interior surface of said second tubular member and the exterior surface of said first tubular member define annular inlet and outlet chambers therebetween, said annular inlet and outlet chambers substantially surrounding at least a portion of the exterior surface of said first tubular member at said inlet and outlet end portions.
- 12. The apparatus of claim 11 wherein said shell means defines at least one inlet opening through said first and second tubular members within said inlet end portions for receiving said second fluid therethrough and at least one outlet opening through said first and second tubular members within said outlet end portions for discharging said second fluid therethrough, said annular inlet chamber being in fluid communication with said at least one inlet opening and said annular outlet chamber being in fluid communication with at least one outlet opening.
- 13. The apparatus of claim 12 wherein the periphery of said first tubular member defines a plurality of apertures within said annular inlet chamber for admitting said second fluid therethrough and further defines a plurality of apertures within said annular outlet chamber for discharging said second fluid therethrough.
- 14. The apparatus for exchanging heat between two fluids comprising:
- a plurality of elongated tubes for carrying a first fluid, each tube having a first end and second end and being formed of filament wound carbon fibers in an epoxy resin matrix;
- a shell for housing said elongated tubes and for establishing a flow path for a second fluid, said shell being formed of a silica reinforced phenolic resin material;
- first support means coupled to an inlet end of said shell for supporting the first end of each tube and for defining a barrier between said first fluid and said second fluid, said first support means being formed of a cotton reinforced phenolic resin material; and
- second support means coupled to an outlet end of said shell for supporting the second end of each tube and for defining a barrier between said first fluid and said second fluid, said second support means being formed of said cotton reinforced phenolic resin material.
- 15. The apparatus of claim 14, wherein each of said support means comprises first and second plate members and means for sealing between said first and second fluids, said first plate members defining a first group of apertures for receiving ends of said tubes and said sealing means and said second plate members defining a second group of apertures for alignment with said first group.
- 16. The apparatus of claim 15 wherein said sealing means comprises a plurality of tubular members having an inner diameter corresponding to the outer diameter of the tubes and a plurality of ring members, wherein each tubular member is disposed between a ring member and one of said second plate members.
- 17. The apparatus of claim 16 wherein apertures of said second group have a smaller diameter than apertures of said first group, wherein an edge surface of each tubular member engages said second plate member in abutting relation.
- 18. The apparatus of claim 14, further comprising first and second tubular head members formed of a thermally insulating phenolic resin material, said first and second tubular head members coupled at one end to said first and second support means, respectively, and covered at an opposite end by a cover plate, wherein said support means, head members and cover plates define respective inlet and outlet chambers for said first fluid and further wherein said inlet chamber includes a flame sprayed copper alloy coating therein.
STATEMENT OF GOVERNMENT INTEREST
The invention described herein may be manufactured and used by or for the Government of the United States of America for governmental purposes without the payment of any royalties thereon or therefor.
US Referenced Citations (8)
Foreign Referenced Citations (2)
Number |
Date |
Country |
9199 |
Jan 1987 |
JPX |
884924 |
Dec 1961 |
GBX |