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[미국특허] Phase change material heat exchanger 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F28D-015/00
출원번호 US-0876672 (1978-02-10)
발명자 / 주소
  • Barlow
  • Sr. Donald W. (Rte. 3
  • Box 295 Dover FL 33527)
인용정보 피인용 횟수 : 37  인용 특허 : 3

초록

A phase change material heat exchanger wherein the latent heat of a substance as its physical state changes from solid to liquid, and vice versa, is utilized as a heat storage medium. Structure is also disclosed whereby a heat transfer fluid is intimately associated with the phase change material so

대표청구항

A phase change material heat exchanger, said heat exchanger comprising: container means defining a substantially closed volume; heat transfer fluid inlet means disposed in fluid communicating relation with the interior of said container means, said inlet means comprising a plurality of discharge hea

이 특허에 인용된 특허 (3) 인용/피인용 타임라인 분석

  1. Johansson Axel H. (Arlov SEX), Device for accumulation tanks for fluid.
  2. Clyne ; Arthur J. ; Knarr ; John E. ; Miller ; Stanley, Energy storage unit and system.
  3. Lindner ; Friedrich ; Mehlhorn ; Frank, Heat exchange method and apparatus including two non-mixable media.

이 특허를 인용한 특허 (37) 인용/피인용 타임라인 분석

  1. Doomernik Cornelis (Berghem NLX), Accumulator for storing heat or cold.
  2. Hu, Xuejiao; Feitisch, Alfred, Analytical equipment enclosure incorporating phase changing materials.
  3. Pilebro, Hans; Eg Andersson, Hakan, Arrangement for storing thermal energy.
  4. Hartmann, Mark H.; Worley, James B.; North, Matthew, Cellulosic fibers having enhanced reversible thermal properties and methods of forming thereof.
  5. Hartmann, Mark; Worley, James Brice; North, Matthew, Cellulosic fibers having enhanced reversible thermal properties and methods of forming thereof.
  6. Hartmann, Mark; Worley, James Brice; North, Matthew, Cellulosic fibers having enhanced reversible thermal properties and methods of forming thereof.
  7. Hartmann,Mark Henry; Worley,James Brice, Cellulosic fibers having enhanced reversible thermal properties and methods of forming thereof.
  8. Worley,James Brice; Hartmann,Mark Henry; Lekan,Alan John; Magill,Monte Christopher; Henshaw,Michael Alan; Pushaw,Robert John, Coated articles having enhanced reversible thermal properties and exhibiting improved flexibility, softness, air permeability, or water vapor transport properties.
  9. O\Neil Robert M. (Flixton GB2), Corrosion inhibition.
  10. Lindner Friedrich (Stuttgart DEX), Discharging a latent-heat accumulator.
  11. Oxley, James D.; Mathur, Anoop Kumar, Encapsulation of high temperature molten salts.
  12. Wendt,Michael; Su,Shi; Glynn,Patrick J., Heat engines and associated methods of producing mechanical energy and their application to vehicles.
  13. Groenewegen Johannes B. (Kirkland WA), Heat shielded memory unit for an aircraft flight data recorder.
  14. Helshoj Egon (Holte DKX), Heat storage device.
  15. Wetch Joseph R. (San Jose CA), Heat transfer loop with cold trap.
  16. Takahashi, Kazuo; Yagi, Hiromiki, Heat-storage unit and operation method of heat-storage unit.
  17. Vetrovec, Jan, High energy laser thermal management.
  18. Stephens, IV, Edward F.; Feeler, Courtney Ryan; Junghans, Jeremy Scott, Laser diode ceramic cooler having circuitry for control and feedback of laser diode performance.
  19. Stephens, IV,Edward Franklin, Laser diode package with an internal fluid cooling channel.
  20. Stephens, IV,Edward Franklin, Laser diode package with an internal fluid cooling channel.
  21. Heberle Geoffrey O., Laser system using phase change material for thermal control.
  22. Heberle, Geoffrey O., Laser system using phase change material for thermal control.
  23. Hartmann, Mark Henry; Magill, Monte Christopher, Melt spinable concentrate pellets having enhanced reversible thermal properties.
  24. Stephens, IV, Edward F., Method of manufacturing laser diode packages and arrays.
  25. Stephens, IV, Edward F.; Feeler, Courtney Ryan; Junghans, Jeremy Scott, Microchannel cooler for a single laser diode emitter based system.
  26. Coleman, Steven M.; Stephens, Edward F., Microchannel cooler for high efficiency laser diode heat extraction.
  27. Magill, Monte C.; Hartmann, Mark H.; Haggard, Jeffrey S., Multi-component fibers having enhanced reversible thermal properties.
  28. Magill, Monte C.; Hartmann, Mark H.; Haggard, Jeffrey S.; Brang, James E., Multi-component fibers having enhanced reversible thermal properties.
  29. Hartmann, Mark; Haggard, Jeffrey S.; Magill, Monte Christopher; Brang, James E., Multi-component fibers having enhanced reversible thermal properties and methods of manufacturing thereof.
  30. Magill, Monte C.; Hartmann, Mark H.; Haggard, Jeffrey S., Multi-component fibers having enhanced reversible thermal properties and methods of manufacturing thereof.
  31. Magill,Monte C.; Hartmann,Mark H.; Haggard,Jeffrey S., Multi-component fibers having enhanced reversible thermal properties and methods of manufacturing thereof.
  32. Magill,Monte C.; Hartmann,Mark H.; Haggard,Jeffrey S., Multi-component fibers having enhanced reversible thermal properties and methods of manufacturing thereof.
  33. Geoffrey O. Heberle, Passively cooled solid-state laser.
  34. Hartmann, Mark H., Stable phase change materials for use in temperature regulating synthetic fibers, fabrics and textiles.
  35. Tsubone, Kenji; Hashi, Seiichi; Tsukahara, Masahito; Fukuzawa, Masataka; Narita, Kouji, Thermal storage device.
  36. McComb, Timothy; Di Teodoro, Fabio, Tunable system for generating an optical pulse based on a double-pass semiconductor optical amplifier.
  37. McComb, Timothy; Di Teodoro, Fabio, Tunable system for generating an optical pulse based on a double-pass semiconductor optical amplifier.

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