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公开(公告)号:US4697433A
公开(公告)日:1987-10-06
申请号:US721921
申请日:1985-04-11
申请人: Gerard Paeye
发明人: Gerard Paeye
CPC分类号: F25B27/007 , F25B17/08 , Y02B30/62
摘要: A thermal energy collector, intended for a system such as a cooling system of the solar type whose mode of operation includes a phase consisting of adsorption of a fluid by a given material and a subsequent desorption phase, comprises a compartment having an upper surface to be exposed to a source of thermal energy and a bottom surface to be connected to a duct joining the compartment to the aforementioned system, with the adsorptive-desorptive material being placed between these surfaces. To increase the efficiency of the adsorptive-desorptive material, a space is provided between the material and the bottom surface of the compartment, with a supporting layer containing openings being placed beneath the material in order to hold it in place against the upper surface.
摘要翻译: 一种用于诸如太阳能类型的冷却系统的系统的热能收集器,其操作模式包括由给定材料吸附流体和随后的解吸相组成的相,包括具有上表面的隔室 暴露于热能源和底表面以连接到将隔室连接到上述系统的管道上,吸附 - 解吸材料被放置在这些表面之间。 为了提高吸附 - 解吸材料的效率,在材料和隔室的底表面之间提供了一个空间,其中包含开口的支撑层放置在材料的下面,以便将其保持在适当的上表面上。
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公开(公告)号:US1764051A
公开(公告)日:1930-06-17
申请号:US17731427
申请日:1927-03-22
发明人: STUART OTTO , LUDWIG REICHERT
IPC分类号: F25B35/02
CPC分类号: F25B35/02 , Y02A30/277 , Y02B30/62
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公开(公告)号:US1565231A
公开(公告)日:1925-12-08
申请号:US72529324
申请日:1924-07-10
申请人: RUMPLER
发明人: EDMUND RUMPLER , HANS RICHTER
IPC分类号: F25B35/02
CPC分类号: F25B35/02 , Y02A30/277 , Y02B30/62
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公开(公告)号:US20210207856A1
公开(公告)日:2021-07-08
申请号:US16072693
申请日:2017-01-19
申请人: COOL4SEA APS
发明人: Hans Nicolai Schjerning Lundsgaard , Daniel Buhl Hansen , Mark Hollaender Viese , Christian Fonnesbaek Jensen
摘要: An absorption refrigeration and air conditioning device capable of controlling temperature and/or the humidity of enclosed spaces particularly useful in maritime applications and improving fuel economy of internal combustion engines is provided.
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公开(公告)号:US20170263789A1
公开(公告)日:2017-09-14
申请号:US15457178
申请日:2017-03-13
发明人: Lin J. Simpson
IPC分类号: H01L31/024 , H01L31/0203 , F25B35/02 , F25B35/04 , B01J20/00 , F25B19/00
CPC分类号: B01J20/00 , F25B17/08 , H01L31/052 , H02S40/42
摘要: An example device includes a photovoltaic (PV) unit and a desiccant-based passive cooling component that is thermally coupled to the PV unit. The desiccant-based passive cooling component is configured to sorb, under first conditions, moisture from an environment that surrounds the device, via at least one of adsorption or absorption, and evaporate, under second conditions that are different from the first conditions, at least a portion of the moisture.
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公开(公告)号:US09464823B2
公开(公告)日:2016-10-11
申请号:US13814792
申请日:2011-08-10
IPC分类号: F25B15/00 , F25B15/16 , F25B17/00 , F25B17/02 , F25B30/04 , F25B39/02 , F25B43/04 , F25B15/02 , F25B37/00 , F28D9/00 , F28D21/00 , F28C3/06 , F25B35/02 , F25B35/00 , F28F3/12
CPC分类号: F25B15/00 , F25B15/02 , F25B15/16 , F25B17/00 , F25B17/02 , F25B30/04 , F25B35/00 , F25B35/02 , F25B37/00 , F25B39/026 , F25B43/046 , F25B2315/006 , F28C3/06 , F28D9/00 , F28D21/0015 , F28F3/12 , Y02A30/277 , Y02B30/62
摘要: The invention is directed toward a vapor-liquid heat and/or mass exchange device that can be used in an integrated heat and/or mass transfer system. To achieve high heat and mass transfer rates, optimal temperature profiles, size reduction and performance increases, appropriately sized flow passages with microscale features, and countercurrent flow configurations between working fluid solution, vapor stream, and/or the coupling fluid in one or more functional sections of the desorber are implemented. In one exemplary embodiment of the present invention, a desorber section utilizes a heating fluid flowing in a generally upward direction and a concentrated solution flowing in a generally downward direction with gravity countercurrent to the rising desorbed vapor stream. To further increase the efficiency of the system, various types of column configurations can be used. Additionally, the surfaces of the microchannels can be altered to better transfer heat.
摘要翻译: 本发明涉及可用于集成的热和/或质量传递系统中的蒸汽 - 液体热和/或质量交换装置。 为了实现高的热传质和传质速率,最佳温度曲线,尺寸减小和性能增加,具有微尺度特征的合适尺寸的流动通道以及工作流体溶液,蒸气流和/或一个或多个功能性的耦合流体之间的逆流流动配置 实施了解吸器的部分。 在本发明的一个示例性实施例中,解吸器部分利用沿大致向上的方向流动的加热流体和沿大致向下的方向流动的浓缩溶液,重力与升高的解吸的蒸汽流逆流。 为了进一步提高系统的效率,可以使用各种类型的列配置。 此外,可以改变微通道的表面以更好地传递热量。
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公开(公告)号:US1726699A
公开(公告)日:1929-09-03
申请号:US24069227
申请日:1927-12-17
申请人: SULZER AG
发明人: GEORGE FERGUSON
IPC分类号: F25B35/02
CPC分类号: F25B35/02 , Y02A30/277 , Y02B30/62
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公开(公告)号:US1568476A
公开(公告)日:1926-01-05
申请号:US75630924
申请日:1924-12-16
申请人: CARL SENSSENBRENNER
发明人: CARL SENSSENBRENNER
IPC分类号: F25B35/02
CPC分类号: F25B35/02 , Y02A30/277 , Y02B30/62
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公开(公告)号:US11236931B2
公开(公告)日:2022-02-01
申请号:US16072693
申请日:2017-01-19
申请人: COOL4SEA APS
发明人: Hans Nicolai Schjerning Lundsgaard , Daniel Buhl Hansen , Mark Hollaender Viese , Christian Fonnesbaek Jensen
摘要: An absorption refrigeration and air conditioning device capable of controlling temperature and/or the humidity of enclosed spaces particularly useful in maritime applications and improving fuel economy of internal combustion engines is provided.
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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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