Claims
- 1. A floating seal system for rotary exchanger mechanisms operated between support members within a divided duct to reduce gas leakage around the periphery of the rotary device and across the face of the rotary device, said seal system comprising peripheral and radial seals comprising:
- an outer peripheral seal secured to an outer peripheral surface of said support member juxtapositioned to an outer peripheral flange of said rotary device, said peripheral seal body made of resilient material having a generally U-shape cross section of two legs joined at one end by a central section, one of said legs secured to said support member outer peripheral surface and the other of said legs having on its outer surface low friction material for contact with said rotary device outer peripheral flange, said legs forming an extended angle of intersection of about 10.degree. to about 30.degree. in the unloaded condition to provide even sealing forces against said rotary device outer peripheral flange in loaded condition, said peripheral seal extending completely around the periphery of said support member except where intersected by said radial seals;
- a radial seal assembly secured to said support member along the divider of said duct, said radial seal assembly comprising a smaller channel bar secured to said divider of said support member, a larger inverted, rigid, floating channel bar having its legs freely movable over the legs of said smaller channel bar and forming a tubular channel therewith, a resilient flexible tube positioned within said tubular channel for substantially its full length to reduce gas leakage across said tubular channel, a spacer near each end of said floating channel extending beyond the face of said floating channel a distance to provide desired clearance between said floating channel and the face of said rotary device, said spacer at each end of said floating channel maintained in contact relation with contact surfaces of said rotary device by spring means near each end of said floating channel coacting between said smaller channel and said floating channel thereby maintaining a controlled clearance between the face of said rotary device and the face of said floating channel bar; and
- said peripheral seal ends abutting the legs of said floating channel of each said radial seal assembly.
- 2. The floating seal system of claim 1 additionally comprising an inner peripheral seal secured to an inner peripheral surface of said support member juxtapositioned to an inner peripheral flange of said rotary device, said peripheral seal body made of resilient material having a generally U-shaped cross section of two legs joined at one end by a central section, one of said legs secured to said support member inner peripheral surface and the other of said legs having on its outer surface low friction material for contact with said rotary device inner peripheral flange, said legs forming an extended angle of intersection of about 10.degree. to about 30.degree. in the unloaded condition to provide even sealing forces against said rotary device inner peripheral flange in loaded condition, said peripheral seal extending completely around the inner hub of said support member except where intersected by said radial seals.
- 3. The floating seal system of claim 1 wherein said outer peripheral seal other leg additionally comprises on its outer surface a mounting groove for replaceably mounting said low friction material for contact with said rotary device outer peripheral flange.
- 4. The floating seal system of claim 1 wherein said outer peripheral seal other leg outer surface is shaped to directly contact said rotary device outer peripheral flange.
- 5. The floating seal system of claim 1 wherein said extended angle of intersection of the outer peripheral seal legs is about 15.degree. to about 25.degree..
- 6. The floating seal system of claim 2 wherein said inner peripheral seal other leg additionally comprises on its outer surface a mounting groove for replaceably mounting said low friction material for contact with said rotary device inner peripheral flange.
- 7. The floating seal system of claim 2 wherein said inner peripheral seal other leg outer surface is shaped to directly contact said rotary device inner peripheral flange.
- 8. The floating seal system of claim 2 wherein said extended angle of intersection of the inner peripheral seal legs is about 15.degree. to about 25.degree..
- 9. The floating seal system of claim 2 wherein said outer and inner peripheral seals are made of silicone rubber.
- 10. The floating seal system of claim 1 wherein said resilient flexible tube of said radial seal assembly has open ends and is made of a resilient, flexible material selected from the group consisting of rubber, vinyl, polyethylene, polypropylene and polyurethane.
- 11. The floating seal system of claim 2 wherein said resilient flexible tube of said radial seal assembly has open ends and is made of a resilient, flexible material selected from the group consisting of rubber, vinyl, polyethylene, polypropylene and polyurethane.
- 12. The floating seal system of claim 1 wherein said resilient flexible tube of said radial seal assembly has closed ends retaining gas within said tube to aid in sealing, said tube being made of a resilient, flexible material selected from the group consisting of rubber, vinyl, polyethylene, polypropylene and polyurethane.
- 13. The floating seal system of claim 2 wherein said resilient flexible tube of said radial seal assembly has closed ends retaining gas within said tube to aid in sealing, said tube being made of a resilient, flexible material selected from the group consisting of rubber, vinyl, polyethylene, polypropylene and polyurethane.
- 14. The floating seal system of claim 1 wherein said spacers extend through a hole in said floating channel bar between said legs and are mounted on a spacer plate secured to the inside of said floating channel bar, different desired clearance obtained by exchanging said spacers.
- 15. The floating seal system of claim 2 wherein said spacers extend through a hole in said floating channel bar between said legs and are mounted on a spacer plate secured to the inside of said floating channel bar, different desired clearance obtained by exchanging said spacers.
- 16. The floating seal assembly of claim 1 wherein said clearance between said floating channel and said face of said rotary device is maintained at less than about 0.01 inch.
- 17. The floating seal assembly of claim 2 wherein said clearance between said floating channel and said face of said rotary device is maintained at less than about 0.01 inch.
- 18. The floating seal system of claim 1 wherein said spring means comprises a coil spring.
- 19. The floating seal system of claim 2 wherein said spring means comprises a coil spring.
- 20. The floating seal system of claim 1 wherein said smaller channel bar and said larger floating channel bar are maintained in loose assembly relation by screws extending through the sides of said floating channel bar projecting in loose fit relationship into slots in the sides of said smaller channel bar.
- 21. The floating seal system of claim 2 wherein said smaller channel bar and said larger floating channel bar are maintained in loose assembly relation by screws extending through the sides of said floating channel bar projecting in loose fit relationship into slots in the sides of said smaller channel bar.
- 22. In an open-cycle air conditioning apparatus of the type comprising; a treatment passageway and a separate regenerative passageway, a sensible heat exchanger means for transfer of thermal energy from one of said passageways to the other, and a desiccant means for transfer of moisture from the treatment passageway to the regenerative passageway, the improvement comprising:
- said sensible heat exchanger means being a thermal exchange rotary device supported by a central shaft within a divided duct and operated between support members;
- said desiccant means being a regenerable desiccant rotary device supported by a central shaft within a divided duct and operated between support members;
- said thermal exchange rotary device and said desiccant rotary device having on each side thereof:
- an outer peripheral seal secured to an outer peripheral surface of said support member juxtapositioned to an outer peripheral flange of said rotary device, said peripheral seal body made of resilient material having a generally U-shaped cross section of two legs joined at one end by a central section, one of said legs secured to said support member outer peripheral surface and the other of said legs having on its outer surface low friction material for contact with said rotary device outer peripheral flange, said legs forming an extended angle of intersection of about 10.degree. to about 30.degree. in the unloaded condition to provide even sealing forces against said rotary device outer peripheral flange in loaded condition, said peripheral seal extending completely around the periphery of said support member except where intersected by said radial seals;
- an inner peripheral seal secured to an inner peripheral surface of said support member juxtapositioned to an inner peripheral flange of said rotary device, said peripheral seal body made of resilient material having a generally U-shaped cross section of two legs joined at one end by a central section, one of said legs secured to said support member inner peripheral surface and the other of said legs having on its outer surface low friction material for contact with said rotary device inner peripheral flange, said legs forming an extended angle of intersection of about 10.degree. to about 30.degree. in the unloaded condition to provide even sealing forces against said rotary device inner peripheral flange in loaded condition, said peripheral seal extending completely around the inner hub of said support member except where intersected by said radial seals;
- a radial seal assembly secured to said support member along the divider of said duct, said radial seal assembly comprising a smaller channel bar secured to said divider of said support member, a larger inverted, rigid, floating channel bar having its legs freely movable over the legs of said smaller channel bar and forming a tubular channel therewith, a resilient flexible tube positioned within said tubular channel for substantially its full length to reduce gas leakage across said tubular channel, a spacer near each end of said floating channel extending beyond the face of said floating channel a distance to provide desired clearance between said floating channel and the face of said rotary device, said spacer at each end of said floating channel maintained in contact relation with contact surfaces of said rotary device by spring means near each end of said floating channel coacting between said smaller channel and said floating channel thereby maintaining a controlled clearance between the face of said rotary device and the face of said floating channel bar; and
- said peripheral seal ends abutting the legs of said floating channel of each said radial seal assembly.
- 23. The floating seal system of claim 22 wherein said outer and inner peripheral seal other legs additionally comprise on their outer surfaces a mounting groove for replaceably mounting said low friction material for contact with said rotary device outer and inner peripheral flanges.
- 24. The floating seal system of claim 22 wherein said outer and inner peripheral seal other leg outer surfaces are shaped to directly contact said rotary device outer and inner peripheral flanges.
- 25. The floating seal system of claim 22 wherein said extended angle of intersection of the outer and inner peripheral seal legs is about 15.degree. to about 25.degree..
- 26. The floating seal system of claim 22 wherein said outer and inner peripheral seals are made of silicone rubber.
- 27. The floating seal system of claim 22 wherein said resilient flexible tube of said radial seal assembly has open ends and is made of a resilient, flexible material selected from the group consisting of rubber, vinyl, polyethylene, polypropylene and polyurethane.
- 28. The floating seal system of claim 22 wherein said resilient flexible tube of said radial seal assembly has closed ends retaining gas within said tube to aid in sealing, said tube being made of a resilient, flexible material selected from the group consisting of rubber, vinyl, polyethylene, polypropylene and polyurethane.
- 29. The floating seal system of claim 22 wherein said spacers extend through a hole in said floating channel bar between said legs and are mounted on a spacer plate secured to the inside of said floating channel bar, different desired clearance obtained by exchanging said spacers.
- 30. The floating seal assembly of claim 22 wherein said clearance between said floating channel and said face of said rotary device is maintained at less than about 0.01 inch.
- 31. The floating seal system of claim 22 wherein said spring means comprises a coil spring.
- 32. The floating seal system of claim 22 wherein said smaller channel bar and said larger floating channel bar are maintained in loose assembly relation by screws extending through the sides of said floating channel bar projecting in loose fit relationship into slots in the sides of said smaller channel bar.
Government Interests
The U.S. Government has rights in this invention pursuant to Contract No. DE-AC03-77-CS34495 awarded by the U.S. Department of Energy.
US Referenced Citations (5)