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    • 1. 发明授权
    • Heat transport system
    • 热运输系统
    • US06185953B1
    • 2001-02-13
    • US09507385
    • 2000-02-18
    • Shinri SadaYasushi HoriTetsushi Maeda
    • Shinri SadaYasushi HoriTetsushi Maeda
    • F25B1300
    • F25D17/02F24F5/0003F25B13/00F25B25/005F25B2313/023F25B2400/16
    • A heat exchanger (1) on the secondary heat source, which exchanges heat with a heat exchanger (12) on the primary heat source in a primary cooling circuit (A), is connected with an indoor heat exchanger (3) through a gas pipe (6) and a liquid pipe (7). A tank (T) storing a liquid cooling medium is connected at its lower end to the liquid pipe (7) and its upper end to a pressure adjustment mechanism (18). Check valves (CV1 and CV2) are disposed on both sides of the connecting point of the tank (T) with respect to the liquid pipe (7). The internal pressure of the tank (T) is changed over alternately between a high pressure state and a low pressure state by the pressure adjustment mechanism (18) so that the liquid cooling medium is supplied to the indoor heat exchanger (3) at the time of the high pressure operation, and the liquid cooling medium is recovered from the heat exchanger (1) on the secondary side to the tank (T) and is circulated by a secondary cooling circuit (B) at the time of the low pressure operation.
    • 与主冷却回路(A)中的一次热源上的热交换器(12)进行热交换的二次热源上的热交换器(1)通过气体管道与室内热交换器(3)连接, (6)和液体管(7)。 存储液体冷却介质的罐(T)的下端与液体管(7)连接,其上端与压力调节机构(18)连接。 止回阀(CV1和CV2)相对于液体管道(7)设置在罐(T)的连接点的两侧。 通过压力调节机构(18),罐(T)的内部压力在高压状态和低压状态之间交替地改变,以便在此时向室内热交换器(3)供给液体冷却介质 的高压运转,并且液体冷却介质从次级侧的热交换器(1)回收到罐(T),并且在低压运转时由二级冷却回路(B)循环。
    • 2. 发明授权
    • Heat transport system
    • 热运输系统
    • US6065302A
    • 2000-05-23
    • US51796
    • 1998-04-22
    • Shinri SadaYasushi HoriTetsushi Maeda
    • Shinri SadaYasushi HoriTetsushi Maeda
    • F24F5/00F25B1/00F25B13/00F25B25/00F25D17/02F28D15/02F04B19/24
    • F25D17/02F24F5/0003F25B25/005F25B13/00F25B2313/023F25B2400/16
    • A heat exchanger (1) on the secondary heat source, which exchanges heat with a heat exchanger (12) on the primary heat source in a primary cooling circuit (A), is connected with an indoor heat exchanger (3) through a gas pipe (6) and a liquid pipe (7). A tank (T) storing a liquid cooling medium is connected at its lower end to the liquid pipe (7) and its upper end to a pressure adjustment mechanism (18). Check valves (CV1 and CV2) are disposed on both sides of the connecting point of the tank (T) with respect to the liquid pipe (7). The internal pressure of the tank (T) is changed over alternately between a high pressure state and a low pressure state by the pressure adjustment mechanism (18) so that the liquid cooling medium is supplied to the indoor heat exchanger (3) at the time of the high pressure operation, and the liquid cooling medium is recovered from the heat exchanger (1) on the secondary side to the tank (T) and is circulated by a secondary cooling circuit (B) at the time of the low pressure operation.
    • PCT No.PCT / JP96 / 03129 Sec。 371日期:1998年4月22日 102(e)日期1998年4月22日PCT 1996年10月24日PCT公布。 第WO97 / 15799号公报 日期1997年5月1日在一次冷却回路(A)中与主热源的热交换器(12)进行热交换的二次热源上的热交换器(1)与室内热交换器(3)连接, 通过气体管道(6)和液体管道(7)。 存储液体冷却介质的罐(T)的下端与液体管(7)连接,其上端与压力调节机构(18)连接。 止回阀(CV1和CV2)相对于液体管道(7)设置在罐(T)的连接点的两侧。 通过压力调节机构(18),罐(T)的内部压力在高压状态和低压状态之间交替地改变,以便在此时向室内热交换器(3)供给液体冷却介质 的高压运转,并且液体冷却介质从次级侧的热交换器(1)回收到罐(T),并且在低压运转时由二级冷却回路(B)循环。