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    • 4. 发明公开
    • ELECTRONIC APPARATUS COOLING DEVICE
    • 电子设备冷却装置
    • EP3229103A1
    • 2017-10-11
    • EP14907366.0
    • 2014-12-05
    • Exascaler Inc.
    • SAITO, Motoaki
    • G06F1/20F25D9/00H01L23/44H05K7/20
    • H05K7/20236F24T10/10F25D9/00F25D9/005G06F1/20G06F1/206H01L23/44H01L2924/0002H05K7/20Y02E10/12H01L2924/00
    • Provided is a cooling system capable of improving the cooling performances of a plurality of electronic apparatuses, of making stabilization by eliminating the variance in the cooling performances and of being improved in the handling and maintainability of the electronic apparatuses. A plurality of inner partitioning walls 13a to 13e, 14a to 14e are provided in a cooling tank having an open space defined by a bottom wall and side walls to divide the open space, and a plurality of arrayed storage sections 15aa to 15dd are defined. An electronic apparatus 100 is stored in each of the storage sections 15aa to 15dd. Each of the storage sections 15aa to 15dd is formed with an inflow opening 16aa to 16dd or an inflow opening 116aa to 116ee and an outflow opening 17aa to 17ee for the cooling liquid 11. The inflow opening 16aa to 16dd or the inflow opening 116aa to 116ee is formed at a bottom portion or a side surface of each storage section 15aa to 15dd, and the outflow opening 17aa to 17ee is formed in the vicinity of the liquid level of the cooling liquid 11 flowing through each storage section 15aa to 15dd.
    • 提供一种冷却系统,其能够改善多个电子设备的冷却性能,通过消除冷却性能的变化来实现稳定性,并且改善电子设备的操作和可维护性。 在具有由底壁和侧壁限定的开放空间的冷却箱中设置多个内隔壁13a至13e,14a至14e以划分开放空间,并且限定了多个阵列储存部分15aa至15dd。 电子设备100被存储在每个存储部分15aa至15dd中。 在各收纳部15aa〜15dd形成流入口16aa〜16dd或流入口116aa〜116ee,流出口17aa〜17ee形成冷却液11.流入口16aa〜16dd或流入口116aa〜116ee 形成在各收纳部15aa〜15dd的底部或侧面,流出口17aa〜17ee形成在流过各收纳部15aa〜15dd的冷却液11的液面附近。
    • 6. 发明公开
    • Kühlvorrichtung zur Erzeugung eines kalten Gasstromes
    • Kühlvorrichtungzur Erzeugung eines kalten Gasstromes
    • EP1757352A2
    • 2007-02-28
    • EP06016178.3
    • 2006-08-03
    • Bruker BioSpin AG
    • Mayer, MarkusGuidoulianov, JevgeniDurst, Roger
    • B01D53/26F25D9/00
    • B01D53/265F25B43/00F25B2500/04F25D9/00
    • Eine Kühlvorrichtung zur Erzeugung eines kalten Gasstromes mit einer Gasquelle und mindestens einem ersten Wärmetauscher (4) mit einem eingangsseitigen Anschluss (14b) und einem ausgangsseitigen Anschluss (15b), der mittels einer Kältequelle (10) gekühlt ist, ist dadurch gekennzeichnet, dass die Kühlvorrichtung mindestens einen zweiten Wärmetauscher (5) mit einem eingangsseitigen Anschluss (14a) und einem ausgangsseitigen Anschluss (15a) umfasst, wobei der erste Wärmetauscher (4) und der zweite Wärmetauscher (5) in einem evakuierten Behälter (11) angeordnet sind und parallel arbeiten, wobei der erste Wärmetauscher (4) und der zweite Wärmetauscher (5) durch ihre ausgangsseitigen Anschlüsse (15a, 15b) mit einer gemeinsamen Ausgangsleitung (8) verbunden sind, in die sie abwechselnd einen gereinigten Gasstrom liefern. Die erfindungsgemäße Kühlvorrichtung kann mit konventionellen Gasen und über einen langen Zeitraum störungsfrei betrieben werden.
    • 该装置具有设置有从气体分离器(2)被冷却的气体的热交换器(4)和从后部流经另一个热交换器(5)的气体容器(6)的净化气体。 交换器(5)通过设置在交换器中的加热线圈(12)加热一段时间。 第三热交换器(7)设置在交换器(4,5)之间,其中来自气源的气体在换热器(7)中通过与冷却热交换器(4)的冷源(10)进行热交换而被冷却 ,5)。 还包括用于生产冷的,清洁的气体流的方法的独立权利要求。
    • 9. 发明公开
    • Refrigeration system and method
    • 制冷系统和方法
    • EP0492983A3
    • 1992-08-19
    • EP91311795.8
    • 1991-12-19
    • THE BOC GROUP, INC.
    • Kirschner, Mark J.Kulik, William M.Sethna, Rustam H.Lee, Ron C.
    • F25D9/00A23L3/375
    • A23L3/361A23L3/375F25D9/00
    • A food refrigeration system (10) for refrigerating articles of, for example, food, includes at least two cooling stages formed by a water cooler (14) and a cryogenic freezer (16). The cryogenic freezer (16) receives the articles of food and transfers heat from the articles of food to a liquid cryogen (liquid nitrogen) so that the articles of food are refrigerated. The transfer of heat from the articles of food to the cryogen causes the cryogen to boil and thereby evolve a cryogenic vapour. The cooler (14) receives the articles of food prior to the cryogenic freezer (16) and transfers heat from the articles of food to the cooling water. Such heat transfer reduces the quantity of cryogen required to refrigerate the articles of food. An eductor (50) is connected to a pump (62) and to vent duct (72) from the cryogenic freezer (16). The cooling water is pumped through the eductor (50) to suck cryogenic vapour from the cryogenic freezer (16) and to mix the cryogenic vapour and the cooling water prior to reception of the cooling water in the cooler (14). Such mixing transfers heat from the cooling water to the cryogenic vapour resulting in an increase of the heat transfer between the articles and the cooling water in the cooler (14). As a result of such increased heat transfer, the amount of cryogen required in refrigerating the articles is reduced.
    • 10. 发明公开
    • ENVIRONMENTAL TEST CHAMBER
    • EP3417271A1
    • 2018-12-26
    • EP17752767.8
    • 2017-02-15
    • Weiss Technik North America, Inc.
    • JOHNSTON, Stephen W.MCKENDRY, Sean D.
    • G01N17/00F24F3/044F24F5/00F25B23/00F25B25/00F25D9/00
    • G01N17/002F24F3/044F25B1/005F25D9/00
    • An environmental test chamber, and method of providing an environmental test chamber, includes combining an equipment module made up of an equipment housing and air treatment equipment in the equipment housing with a selected one or more of a plurality of chamber modules connected with the equipment module to provide the environmental test chamber. The equipment housing includes an opening defining an airflow passage and an airflow path extending to the airflow passage. The air treatment equipment includes air moving equipment flowing air along the airflow path through the airflow passage and air-conditioning equipment in the flow path. The air treatment equipment includes one or more of (i) heating equipment for selectively heating the flowing air, (ii) cooling equipment for selectively cooling the flowing air, (iii) humidification equipment for selectively humidifying the flowing air, and/or (iv) dehumidification equipment for selectively dehumidifying the flowing air. A plurality of chamber modules of different sizes from each other are provided. Each of the chamber modules has a chamber housing with an opening defining an airflow passage in the chamber housing that aligns with the airflow opening in the equipment module and an access opening that is selectively opened for accessing an interior of the chamber module. In this manner, the one or ones of the chamber modules that is connected with the equipment module determines a configuration of the environmental test chamber.