Claims
- 1. A heat exchanger using cold pressurized air to cool gases and liquids comprising:
- a. a cylindrical heat transfer tube having a closed end and an open end;
- b. a manifold secured gas tight to said open end of said heat transfer tube, said manifold having an annular collar adjacent said open end, an annular manifold plate parallel and adjacent to said collar to define an annular cooling space therebetween and a closed manifold housing secured to said collar and surrounding said manifold plate; said collar and said manifold plate, each, having a plurality of aligned distributor tube openings;
- c. a plurality of small diameter distributor tubes extending through said tube openings and being gas tight connected to said manifold plate, each tube having orifice openings along its length directed radially outwardly so as to face the interior of said heat transfer tube;
- d. an insulating annular ring within said heat transfer tube and adjacent said collar and having a plurality of aligned distributor tube openings so that said manifold plate is protected from direct exposure to heat from within said heat transfer tube by said insulating ring and said collar;
- e. said manifold plate having multiple orifices extending therethrough for impinging cold air from said manifold housing against said collar and within said cooling space for cooling said collar;
- f. an exhaust tube extending through the central openings of said insulating ring, said collar, and said manifold plate for exhausting heated air from said heat transfer tube; the central openings of said collar and said ring is larger than said exhaust tube to define a leakage path therebetween for leaking air from said cooling space past said insulating ring into the interior of said heat transfer tube; and
- g. an insulating sleeve secured to said exhaust tube for insulating said collar and said manifold plate from heated air exhausted through said exhaust tube from said heat transfer tube.
- 2. The heat exchanger of claim 1 further including at least one annular tube support plate spaced at a longitudinal distance within said heat transfer tube, said tube support plate having an inside diameter approximately equal to that of said exhaust tube and an outside diameter slightly less than the inside diameter of said heat transfer tube, said tube support plate further including a plurality of fourth distributor tube openings aligned with said collar distributor tube openings for receiving said distributor tubes whereby said tube support plate's outer edge restrains movement of said distributor tube during operation of said heat exchanger.
- 3. The heat exchanger of claim 2 wherein said tubular openings in said insulating ring, said collar and said manifold plate are located with the center of each tubular opening circumferentially spaced from one another on an imaginary circle which is concentric with said exhaust tube, said multiple orifices spaced radially outwardly from said imaginary circle to insure cooling of said collar.
- 4. The heat exchange of claim 3 wherein said insulating ring has a central opening larger than said insulating sleeve to define an annular space therebetween said annular space forming part of said leakage path.
- 5. A gas immersion cooler for cooling the liquid contents of a heat treat furnace quench tank comprising:
- a. a cylindrical heat transfer robe having a closed axial end and an open axial end;
- b. an annular manifold collar secured on one side in a gas tight manner to said heat transfer tube's open end, said collar having a central exhaust opening and a plurality of distributor robe openings, the center of each distributor tube opening located at equal circumferential increments about an imaginary circle concentric with said exhaust opening;
- c. a gas exhaust tube longitudinally extending from said exhaust opening and a distributor tube within each tube opening extending longitudinally in the opposite direction from said exhaust tube to be positioned within and closely adjacent the interior of said heat transfer tube, each distributor tube having a plurality of orifices opening to the interior cylindrical surface of said heat transfer tube and spaced at longitudinal increments so that each orifice is adapted to develop a free standing gas jet impinging the interior surface of said heat transfer tube;
- d. a manifold housing secured in a gas tight manner to said exhaust tube on the opposite side of said collar from that which said heat transfer tube is affixed, said manifold housing having an air inlet in fluid communication with said distributor tubes;
- e. fan means outside said quench tank for developing a pressurized wind mass at ambient temperature; inlet conduit means in fluid communication with said fan means and said manifold inlet extending into said quench tank for providing said pressurized wind mass to said distributor tubes and outlet conduit means in fluid communication with said exhaust tube extending outside said quench tank for exhausting said wind mass from said cooler after it has impacted the interior of said heat transfer tube.
- 6. The immersion cooler of claim 5 further including an annular manifold plate within said manifold housing spaced closely adjacent to said collar side from which said exhaust tube extends, said manifold plate having a central annular opening receiving said exhaust tube and welded gas tight thereto, said manifold plate having a plurality of second distributor tube openings aligned with said distributor tube openings in said collar and secured gas tight to said distributor tubes; and a plurality of bleed orifices extending through said manifold plate adapted to permit a portion of said wind mass to pass therethrough and impinge said collar for cooling same, said central exhaust opening in said collar slightly larger than said exhaust tube so that said wind mass can flow therethrough into said heat transfer tube whereby said manifold plate is shielded from heat from said heat transfer tube by said collar which is cooled by coolant from within said manifold housing.
- 7. The immersion cooler of claim 6 wherein said manifold housing includes a circular end plate portion having a central opening through which said exhaust tube extends in a secured, gas-tight manner and a cylindrical portion longitudinally extending from said end plate portion to said collar whereat said cylindrical portion is affixed in a gas-tight manner, said manifold plate having an outer edge secured in a gas-tight manner to the interior of said cylindrical portion to define a cooling, space within said manifold housing between said manifold plate and said collar.
- 8. The immersion cooler of claim 6 further including a thermal, ceramic riser sleeve within the interior of said exhaust tube, and an insulating ring within said heat transfer tube adjacent said collar, said insulating ring having a central opening slightly larger than said sleeve and a plurality of third distributor tube openings aligned with said second distributor tube openings for receiving said distributor tubes whereby said insulating ring and said collar shield said manifold plate from heat within said heat transfer tube while said insulating sleeve shields said manifold plate and said collar from heated coolant exhausted from said heat transfer tube.
- 9. The immersion cooler of claim 5 further including at least one annular tube support plate spaced at a longitudinal distance within said heat transfer tube, said tube support plate having an inside diameter approximately equal to that of said exhaust tube and an outside diameter slightly less than the inside diameter of said heat transfer tube, said tube support plate further including a plurality of fourth distributor tube openings aligned with said collar distributor tube openings for receiving said distributor tubes whereby said tube support plate's outer edge restrains movement of said distributor tube during operation of said immersion cooler to maintain radial spacing between said distributor tube's orifices and the interior of said heat transfer tube.
- 10. A thermal seal arrangement in combination with a gas heat exchanger which includes a plurality of elongated distributor tubes having a plurality of orifices spaced along the length thereof for discharging jet streams of a gaseous heat exchange medium in convective heat transfer contact with a heat transfer surface, said distributor tubes affixed to an annular manifold collar having a central exhaust opening, said seal arrangement comprising:
- a manifold housing affixed in a gas tight manner to said manifold collar on the side opposite from that which said distributor tubes extend and having an inlet opening formed therein;
- an exhaust tube slightly less in diameter than said collar's central opening extending through said manifold housing and sealed in a gas tight manner to said housing to define between said manifold housing and said exhaust tube a sealed manifold chamber, said manifold chamber in fluid communication with the inlets of said distributor tubes mounted to said manifold collar and a manifold plate within said manifold chamber, said manifold plate and said collar having a plurality of openings through which said distributor tubes extend, said distributor tubes gas tight secured to said manifold plate; said manifold plate secured at its outer edge to said manifold housing and at its inner edge to said exhaust tube to define a cooling space within said manifold chamber extending between said manifold plate and said manifold collar, said manifold plate having a plurality of bleed orifices extending therethrough for permitting a small portion of said gaseous medium in said manifold housing to impinge said manifold collar and subsequently pass through the opening between said manifold collar and said exhaust tube prior to being exhausted through said exhaust tube to maintain said manifold plate at even thermal temperatures while shielding said manifold plate from heat.
- 11. The seal arrangement of claim 10 further including an insulating ring adjacent said collar opposite said manifold plate for shielding said collar from heat, said insulating ring having a central opening larger than and receiving said exhaust tube, said small portion of said gaseous medium exhausted through the space between said insulation ring and said exhaust tube.
- 12. The seal arrangement of claim 11 further including an insulating sleeve secured to said exhaust tube for insulating said collar and said manifold plate from heat within said exhaust tube.
- 13. The seal arrangement of claim 12 wherein said gaseous medium is air at ambient temperatures and said portion of said gaseous medium is no more than about 5% by mass flow volume of said gaseous medium.
Parent Case Info
This is a continuation-in-part of my prior U.S. patent application Ser. No. 276,399, filed Jul. 18, 1994 now abandoned.
US Referenced Citations (12)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
276399 |
Jul 1994 |
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