Claims
- 1. An external split heat exchanger comprising exchanger for preheating domestic water comprising:
a shell comprising a pair of hollow joinable half cylindrical members, each said half cyclindrical member joined to each other half cylindrical member along common longitudinally extending edges, each said half cylindrical member having a separate hollow serpentine fluid flow chamber therein; each said fluid flow chamber having a water inlet end and a water outlet end; and, said split heat exchanger being placed over an existing flue pipe and fastened together.
- 2. The external split heat exchanger as in claim 1 further comprising a layer of thermal insulation between said separate hollow serpentine fluid flow chamber and said shell.
- 3. The external split heat exchanger as in claim 2 further comprising inlet and outlet nipples permitting fluid flow through said separate hollow serpentine fluid flow chamber of said external split heat exchanger.
- 4. The external split heat exchanger as in claim 3 wherein each said separate hollow serpentine fluid flow chamber is a pair of joined serpentine tubing section conforming to an interior of each half cylindrical member of said shell;
each separate hollow said serpentine fluid flow chamber having a plurality of fluid flow reversal flows creating flow turbulence, enhancing heat transfer efficiency; and, each said separate hollow serpentine fluid flow chamber shaped to conform to each said shell half cylindrical member.
- 5. The external split heat exchanger as in claim 4 wherein each said separate hollow fluid flow chamber comprises a serpentine tubing section extending longitudinally and reversing longitudinally repeatedly with each said half section.
- 6. The external split heat exchanger as in claim 4 wherein each said separate hollow fluid flow chamber comprises a serpentine tubing section extending transversally and reversing repeatedly with each said half section.
- 7. The external split heat exchanger as in claim 4 wherein each said separate hollow fluid flow chamber comprises a plurality of internal baffle plates directing liquid flow in a plurality of reversing paths.
- 8. The external split heat exchanger as in claim 7 wherein said baffle plates are straight, and extend longitudinally within each said shell half cylindrical member.
- 9. The external split heat exchanger as in claim 7 wherein said baffle plates are curved and extend transversally within each shell half cylindrical member.
- 10. The external split heat exchanger as in claim 4 wherein said joined shell comprises a shallow tank with curved inner and outer surfaces and circular end pieces, said inner surface conforming closely to an outer diameter of said flue pipe, enhancing heat transfer therein.
- 11. The external split heat exchanger as in claim 1 wherein said external split heat exchanger comprises a plurality of end-to-end axially aligned shells.
- 12. The external split heat exchanger as in claim 1 wherein said shell half cylindrical members of said external split heat exchanger are connected in parallel with each other.
- 13. The heat exchanger as in claim 1 wherein said shell half cylindrical members of said split heat exchanger are connected in series with each other.
- 14. The heat exchanger as in claim 1 wherein each said shell half cylindrical member is isolated from each other said shell half cylindrical member.
- 15. A heat exchanger for preheating domestic water comprising:
a hollow tubing having a water inlet end and a water outlet end, said hollow tubing being located external to and wrapped helically around a section of a flue pipe; a sleeve covering only said hollow tubing, wherein said sleeve has a plurality of holes sufficient for said water inlet end and said water outlet end to protrude therefrom, said sleeve having an inside wherein said inside of said sleeve is substantially dry; wherein said heat exchanger is prefabricated as a standard flue section, which substitutes for a length of said flue pipe; and, wherein said sleeve is an encasement that permanently encloses said tubing, said encasement having a cavity and heat resistant end caps, said cavity having a fibrous highly heat conductive material packed therein.
- 16. The heat exchanger as in claim 15, wherein said sleeve comprises a preformed semi-pliable sleeve, said sleeve having two edges having clasps that when brought together close said sleeve and enclose said tubing forming a plurality of holes sufficient for said water inlet end and said water outlet end to protrude therefrom.
- 17. The heat exchanger as in claim 1 further comprising a pressure relief valve coupling one end of said relief valve to the water outlet end of said hollow tubing.
- 18. The heat exchanger as in claim 15 further comprising an isolation valve coupling said relief valve to a boiler hot water coil intake.
- 19. The heat exchange as in claim 17 further comprising an automatic feeder coupling said relief valve to a boiler hot water coil intake.
- 20. The heat exchanger as in claim 15 wherein said heat exchanger further comprising a second heat exchanger connected in series therewith and wrapped around and external to another section of flue piping, further increasing water temperature prior to entering the furnace hot water coil.
- 21. The heat exchanger as in claim 15 further comprising a thermal insulator fiberglass liner.
- 22. The heat exchanger as in claim 15 wherein said heat exchanger is a hydronic heating system using fin tube heating elements, said heat exchanger having a hydronic loop circulated by a circulator pump forcing water into a heating coil inside the boiler then leading to an expansion tank and further to an arrangement of zone valves through fin tube baseboard hot water room sections and then through a return manifold.
- 23. The heat exchanger as in claim 15 wherein said heat exchanger coil is wrapped around a cylindrically shaped sheet of conductive metal, said cylinder having three quarters of its circumference affixed to a corresponding area of coil, which said sheet is slightly larger in diameter than a section of said flue pipe, said sheet having a small gap along its length, said gap allowing said flue section to slide into said cylinder, said cylinder further comprising a locking means to secure said cylinder when said gap is closed.
- 24. The heat exchanger as in claim 23 wherein said cylindrical sheet is copper, said cylinder also having gaskets on the inner and outer periphery of said cylinder sufficient in size to prevent contact with flue pipe sections made from a different type of metal.
- 25. The heat exchanger as in claim 15 further comprising a pair of interleaved flue heat exchanger coils wrapped together around said flue pipe, said coils comprising two separate conduits for separate transfer of heated water therethrough.
- 26. A heat exchanger for a domestic source of heat having a flue pipe leading to a masonry chimney, comprising:
a coil of heat conductive tubing wrapped around a section of said flue, said coil picking up heat from the heated flue gasses wherein said flue section is made of copper; said flue section further having gaskets located on respective inner and an outer edge peripheries, thereby preventing direct contact with flue sections made from metal other than copper.
- 27. The heat exchanger as in claim 26 wherein a cold water source is coupled to a length of convoluted flexible tubing having coupling flanges at either end, wherein said coupling flanges allow water transport to and from said heat exchanger.
- 28. The heat exchanger as in claim 27 wherein the preheated water from said heat exchanger is coupled to a boiler hot water coil intake.
- 29. The heat exchanger as in claim 28, wherein the preheated water from said heat exchanger is also coupled to a domestic supply pipe.
- 30. The heat exchanger as in claim 26 further comprising a pressure relief valve.
- 31. A heat exchanger for preheating domestic water comprising a hollow tubing having a water inlet end and a water outlet end, said hollow tubing external to and wrapped around a section of a flue pipe of a furnace;
said heat exchanger is prefabricated as a standard flue section, which substitutes for a length of said flue pipe; said pre-fabricated heat exchanger having a central flue pipe section with heat exchanger tubing wrapped around its periphery; said pre-fabricated heat exchanger further having an encasement over said heat exchanger tubing, said encasement enclosing said tubing; said encasement having a cavity and heat resistant end caps, said encasement also having a plurality of openings sufficient for a water outlet and water inlet to protrude therefrom, said cavity having a highly heat conductive material packed therein; said encasement comprising a preformed semi-pliable sleeve, said sleeve having two edges having clasps that when brought together close said sleeve and enclose said tubing forming a plurality of holes sufficient for said water inlet and said water outlet to protrude therefrom; and, said encasement including a fibrous thermal insulator between said encasement's inner surface and the heat conductive material.
RELATED APPLICATIONS
[0001] This application is a continuation-in-part of application Ser. No. 09/404,073, filed Sep. 23, 1999.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09404073 |
Sep 1999 |
US |
Child |
10046013 |
Jan 2002 |
US |