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公开(公告)号:US10508836B2
公开(公告)日:2019-12-17
申请号:US15448747
申请日:2017-03-03
申请人: Xergy Inc.
发明人: Bamdad Bahar , William Parmelee
IPC分类号: F25B15/09 , F25B30/04 , F25B17/12 , A47C7/74 , B60N2/56 , C09K5/16 , C01B3/00 , F17C11/00 , F25B35/04
摘要: A heating/cooling system for furnishing employs an electrochemical heat transfer device. An electrochemical heat transfer device may be an electrochemical hydrogen compressor that pumps hydrogen into and out of a tank having a metal hydride forming alloy therein. The absorption of hydrogen by the metal hydride forming alloy is exothermic, produces heat, and the desorption of the hydrogen from the metal hydride forming, alloy is endothermic and draws heat in. An electrochemical hydrogen compressor may be configured between the tanks and pump hydrogen back and forth to form a heat transfer device. A heat exchange device may be coupled with the tank or may comprise the outer surface of the tank to transfer heat to an object or to the surroundings. A closed loop may be configured having two tanks and one or two electrochemical hydrogen compressors to pump the hydrogen in a loop around the system.
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2.
公开(公告)号:US3231336A
公开(公告)日:1966-01-25
申请号:US13044761
申请日:1961-07-03
申请人: LINDBERG JR JOHN E
发明人: LINDBERG JR JOHN E
CPC分类号: G21C15/00 , F25B15/09 , G05D23/1919 , Y02A30/277 , Y02B30/62 , Y02E30/40
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公开(公告)号:US11060769B2
公开(公告)日:2021-07-13
申请号:US16199950
申请日:2018-11-26
申请人: LG ELECTRONICS INC.
发明人: Minkyu Oh
IPC分类号: F25B1/00 , F25B1/02 , F25B1/04 , F25B1/047 , F25B1/053 , F25B1/06 , F25B1/08 , F25B1/10 , F25B3/00 , F25B5/00 , F25B5/02 , F25B5/04 , F25B6/00 , F25B6/02 , F25B6/04 , F25B7/00 , F25B9/00 , F25B9/02 , F25B9/04 , F25B9/06 , F25B9/08 , F25B9/10 , F25B9/12 , F25B9/14 , F25B11/00 , F25B11/02 , F25B11/04 , F25B13/00 , F25B15/00 , F25B15/02 , F25B15/04 , F25B15/06 , F25B15/08 , F25B15/09 , F25B15/10 , F25B15/12 , F25B15/14 , F25B15/16 , F25B17/00 , F25B17/02 , F25B17/04 , F25B17/06 , F25B17/08 , F25B17/10 , F25B17/12 , F25B19/00 , F25B19/02 , F25B19/04 , F25B21/00 , F25B21/02 , F25B21/04 , F25B23/00 , F25B25/00 , F25B25/02 , F25B27/00 , F25B27/02 , F25B29/00 , F25B30/00 , F25B30/02 , F25B30/04 , F25B30/06 , F25B31/00 , F25B31/02 , F25B33/00 , F25B35/00 , F25B35/02 , F25B35/04 , F25B37/00 , F25B39/00 , F25B39/02 , F25B39/04 , F25B40/00 , F25B40/02 , F25B40/04 , F25B40/06 , F25B41/00 , F25B41/10 , F25B41/20 , F25B41/22 , F25B41/24 , F25B41/26 , F25B41/28 , F25B41/30 , F25B41/31 , F25B41/315 , F25B41/32 , F25B41/325 , F25B41/33 , F25B41/335 , F25B41/34 , F25B41/345 , F25B41/35 , F25B41/355 , F25B41/36 , F25B41/37 , F25B41/375 , F25B41/38 , F25B41/385 , F25B41/39 , F25B41/40 , F25B41/42 , F25B41/45 , F25B41/48 , F25B43/00 , F25B43/02 , F25B43/04 , F25B45/00 , F25B47/00 , F25B47/02 , F25B49/00 , F25B49/02 , F25B49/04 , F25D31/00 , F25D17/06 , F25D17/04
摘要: A refrigerator includes a main body that has a storage chamber and a drying chamber; a thermoelectric module that includes a heat absorber and a heat dissipater; a cooling fan that circulates air in the storage chamber to the heat absorber and the storage chamber; a heat-dissipating fan that blows air to the heat dissipater; an air guide that has a passage for guiding air heated by the heat dissipater to the drying chamber; a heater that is disposed in the passage; and a damper that controls a flow of air in the passage between the heat-dissipating fan and the heater. Heat of the heat dissipater transfers to the drying chamber through the passage of the air guide and the damper, thereby being able to dry an object to be dried.
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公开(公告)号:US20170241677A1
公开(公告)日:2017-08-24
申请号:US15448747
申请日:2017-03-03
申请人: Xergy Inc.
发明人: Bamdad Bahar , William Parmelee
CPC分类号: F25B15/09 , A47C7/744 , A47C7/748 , B60N2/5678 , B60N2/5692 , C01B3/0031 , C09K5/16 , F17C11/005 , F25B17/12 , F25B30/04 , F25B35/04 , Y02E60/321
摘要: A heating/cooling system for furnishing employs an electrochemical heat transfer device. An electrochemical heat transfer device may be an electrochemical hydrogen compressor that pumps hydrogen into and out of a tank having a metal hydride forming alloy therein. The absorption of hydrogen by the metal hydride forming alloy is exothermic, produces heat, and the desorption of the hydrogen from the metal hydride forming alloy is endothermic and draws heat in. An electrochemical hydrogen compressor may be configured between to tanks and pump hydrogen back and forth to form a heat transfer device. A heat exchange device may be coupled with the tank or may comprise the outer surface of the tank to transfer heat to an object or to the surroundings. A closed loop may be configured having two tanks and one or two electrochemical hydrogen compressors to pump the hydrogen in a loop around the system.
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5.
公开(公告)号:US20050103027A1
公开(公告)日:2005-05-19
申请号:US10504510
申请日:2003-02-19
申请人: Toshio Ichijo , Kikuo Nakamura
发明人: Toshio Ichijo , Kikuo Nakamura
CPC分类号: F25B25/02 , F25B15/09 , F25B2315/003
摘要: A refrigerating method and a refrigerating system utilizing a large decomposition heat absorbed at the time of decomposition of the gas hydrate and building up, by a pump, the pressure of liquid components generated due to the decomposition of gas hydrate and compressing only gas components by a compressor, the refrigerating method comprising the steps of generating the gas hydrate (H) by a hydrate generating reactor (11), decomposing the gas hydrate (H) into the liquid components (L) and the gas components (G) after depressurization to absorb heat, separating the decomposed liquid components (L) and gas components (G) from each other, building up the pressure of the liquid components (L) by the pump (16) and transferring to the hydrate generating reactor (11), and pressurizing and compressing only the gas components (G) by the compressor (17) and transferring to the hydrate generating reactor (11).
摘要翻译: 一种制冷方法和制冷系统,利用在气体水合物分解时吸收的大的分解热,并由泵建立由于天然气水合物分解而产生的液体组分的压力,并且仅将气体成分压缩 压缩机,所述制冷方法包括以下步骤:通过水合物发生反应器(11)产生气体水合物(H),在减压之后将气体水合物(H)分解成液体组分(L)和气体组分(G)以吸收 将分解的液体成分(L)和气体成分(G)分离,通过泵(16)构成液体成分(L)的压力并向水合物生成反应器(11)进行加压, 并通过压缩机(17)仅压缩气体成分(G)并转移到水合物生成反应器(11)。
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公开(公告)号:US10818940B2
公开(公告)日:2020-10-27
申请号:US16278354
申请日:2019-02-18
摘要: A climate control system includes an electrochemical device in fluid communication with at least one fluid conduit that also includes a first heat exchanger, an expansion device, and a pump, but may be free of any condensers. A working fluid is circulated in the fluid conduit that has a composition that undergoes a reversible hydrogenation and dehydrogenation reaction when it passes through the electrochemical device when a potential is applied thereto. The climate control system includes a heat rejection system in the form of a recirculation loop having a second heat exchanger configured to cool a portion of the working fluid exiting the electrochemical device and a recirculation pump that circulates the portion of the working fluid exiting the electrochemical device through the second heat exchanger and back to an inlet of the electrochemical device. Methods for rejecting heat from an electrochemical climate control system are also provided.
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公开(公告)号:US20190260043A1
公开(公告)日:2019-08-22
申请号:US16278354
申请日:2019-02-18
IPC分类号: H01M8/04029 , F25B15/09 , F25B30/02 , F25B13/00
摘要: A climate control system includes an electrochemical device in fluid communication with at least one fluid conduit that also includes a first heat exchanger, an expansion device, and a pump, but may be free of any condensers. A working fluid is circulated in the fluid conduit that has a composition that undergoes a reversible hydrogenation and dehydrogenation reaction when it passes through the electrochemical device when a potential is applied thereto. The climate control system includes a heat rejection system in the form of a recirculation loop having a second heat exchanger configured to cool a portion of the working fluid exiting the electrochemical device and a recirculation pump that circulates the portion of the working fluid exiting the electrochemical device through the second heat exchanger and back to an inlet of the electrochemical device. Methods for rejecting heat from an electrochemical climate control system are also provided.
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公开(公告)号:US10211469B1
公开(公告)日:2019-02-19
申请号:US15899024
申请日:2018-02-19
IPC分类号: C09K5/16 , F25B13/00 , F25B15/09 , F25B30/02 , H01M8/04029
摘要: A climate control system includes an electrochemical device in fluid communication with at least one fluid conduit that also includes a first heat exchanger, an expansion device, and a pump, but may be free of any condensers. A working fluid is circulated in the fluid conduit that has a composition that undergoes a reversible hydrogenation and dehydrogenation reaction when it passes through the electrochemical device when a potential is applied thereto. The climate control system includes a heat rejection system in the form of a recirculation loop having a second heat exchanger configured to cool a portion of the working fluid exiting the electrochemical device and a recirculation pump that circulates the portion of the working fluid exiting the electrochemical device through the second heat exchanger and back to an inlet of the electrochemical device. Methods for rejecting heat from an electrochemical climate control system are also provided.
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公开(公告)号:US4178987A
公开(公告)日:1979-12-18
申请号:US923805
申请日:1978-07-12
摘要: Moving bed hydride heat pumps and pressure pumps are described in which a hydride-forming material is transported between two or more reactor vessels. Each vessel can be maintained at a predetermined temperature, and thus, the hydride-forming material may be heated or cooled by moving it into an appropriately heated or cooled reactor vessel. In this way thermal cycling of reactor vessels is reduced or eliminated. Both continuously operating and moving batch hydride pumping systems are disclosed.
摘要翻译: 描述了移动床氢化物热泵和压力泵,其中氢化物形成材料在两个或更多个反应器容器之间输送。 每个容器可以保持在预定温度,因此,可以通过将氢化物形成材料移入适当加热或冷却的反应器容器中来加热或冷却氢化物形成材料。 以这种方式减少或消除反应器容器的热循环。 公开了连续操作和移动的批量氢化物泵送系统。
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公开(公告)号:US3075361A
公开(公告)日:1963-01-29
申请号:US69535757
申请日:1957-11-08
申请人: LINDBERG JR JOHN E
发明人: LINDBERG JR JOHN E
CPC分类号: G05D23/1919 , F25B15/09 , G21C15/00 , Y02A30/277 , Y02B30/62 , Y02E30/40 , Y10S62/02
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