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    • 4. 发明申请
    • COOLING MODULE
    • 冷却模块
    • US20160245595A1
    • 2016-08-25
    • US15051697
    • 2016-02-24
    • Hanon Systems
    • Jun Il JangJong Du Lee
    • F28F9/02
    • F28F9/02F28D1/0452F28D2021/0031F28D2021/0043F28D2021/0084F28D2021/0091F28F9/0234F28F9/262
    • A cooling module includes a first radiator configured to cool a fuel cell stack. A second radiator is positioned in a predetermined area in front of the first radiator in an air flow direction and configured to cool an electronic component. A first condenser is positioned in the other remaining area in front of the first radiator in the air flow direction and heat-exchanged with ambient air to condense a refrigerant. A second condenser is provided within the second radiator and heat-exchanged with a coolant to condense a refrigerant. The second radiator and the first condenser are positioned alongside each other in front of the first radiator. The second condenser is provided within the second radiator.
    • 冷却模块包括配置成冷却燃料电池堆的第一辐射器。 第二散热器沿空气流动方向定位在第一散热器前面的预定区域中,并且被配置为冷却电子部件。 第一冷凝器在空气流动方向上位于第一散热器前面的另一个剩余区域中,并与环境空气进行热交换以冷凝制冷剂。 第二冷凝器设置在第二散热器内并与冷却剂热交换以冷凝制冷剂。 第二散热器和第一冷凝器在第一散热器前面彼此并排放置。 第二冷凝器设置在第二散热器内。
    • 6. 发明申请
    • INTEGRATED COOLING SYSTEM
    • 集成冷却系统
    • US20150020994A1
    • 2015-01-22
    • US14372625
    • 2013-02-28
    • CALSONIC KANSEI CORPORATION
    • Eiichi MoriNorimitsu Matsudaira
    • F28D15/00F28F27/02
    • F28D15/00B60H1/00342F28D2021/0084F28D2021/0091F28D2021/0094F28F9/0234F28F27/00F28F27/02F28F2265/12F28F2265/16F28F2265/18
    • An integrated cooling system comprises a first cooling circuit including a first heat exchanger that cools a first cooling medium by a core portion arranged between an inlet tank and an outlet tank; a second cooling circuit including a second heat exchanger installed in the outlet tank to cool a second cooling medium by the first cooling medium, a pressure of the second cooling medium of the second heat exchanger being higher than that of the first cooling medium, in which at a power position that can secure in the first cooling circuit a minimum necessary amount of the first cooling medium for functioning the first cooling circuit, there is provided a fragile portion that is broken when applied with a pressure equal to or larger than a predetermined level thereby to permit communication between the interior and the outside of the outlet tank.
    • 集成冷却系统包括:第一冷却回路,包括第一热交换器,其通过布置在入口箱和出口罐之间的芯部分冷却第一冷却介质; 第二冷却回路,其包括安装在出口罐中的第二热交换器,用于通过第一冷却介质冷却第二冷却介质,第二热交换器的第二冷却介质的压力高于第一冷却介质的压力,其中 在能够将第一冷却回路中固定的第一冷却介质的第一冷却回路的最低必需量的功率位置设置为在施加了规定等级以上的压力的情况下被破坏的脆弱部 从而允许出口罐的内部和外部之间的连通。
    • 8. 发明申请
    • COMPOUND TYPE HEAT EXCHANGER
    • 复合式热交换器
    • US20110284186A1
    • 2011-11-24
    • US13143599
    • 2010-01-07
    • Tadahiro Hirai
    • Tadahiro Hirai
    • F28D15/00
    • F28F9/0234F01P2060/02F28D1/0461F28D2021/0082F28D2021/0094F28F9/0282F28F2220/00Y10S165/916
    • In a compound type heat exchanger A1, a first heat exchanger 1 includes a pair of long tanks 3, 4 arranged a certain distance apart from each other and a core part 5 having tubes 5a between the both tanks 3, 4. The tank 3 is composed of a plurality of divided bodies 6 to 8 that are connected along a longitudinal direction of the tank 3. The divided body 7 is provided with an accommodation portion 9 that projects outwardly to communicate with the certain divided body 7. A second heat exchanger 2 is arranged in the accommodation portion 9, which is provided with an input port P3. Heat is exchanged between an intake air of the first heat exchanger 1 that flows in the accommodation portion 9 and a coolant of the second heat exchanger 2.
    • 在复合式热交换器A1中,第一热交换器1包括彼此间隔一定距离的一对长箱体3,4和在两个罐3,4之间具有管5a的芯部5。 由沿着罐3的长度方向连接的多个分割体6〜8构成。分隔体7设有向外突出的与该分割体7连通的容纳部9。第二热交换器2 设置在容纳部分9中,该部分设置有输入端口P3。 热量在第一热交换器1的在容纳部分9中流动的进气和第二热交换器2的冷却剂之间交换。