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首页> 外文期刊>Journal of Applied Mathematics and Physics >Experimental Investigation of Loop Heat Pipe with Two Evaporators/Two Condensers under Thermal Vacuum Condition
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Experimental Investigation of Loop Heat Pipe with Two Evaporators/Two Condensers under Thermal Vacuum Condition

机译:热真空条件下带两个蒸发器/两个冷凝器的环形热管的实验研究

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Multiple loop heat pipe is a high-functional thermal transport device. This work was conducted to confirm the working performance of Multiple loop heat pipe under thermal vacuum ambience with the working fluid ammonia. Asmall multiple loop heat pipe with two evaporators and two ra- diators was designed and fabricated. Then thermal vacuum test was conducted. The heaters were fasten on both evaporators, both radiators, both compensation chambers. In the case that both evaporators were heated, the multiple loop heat pipe can transport 120/120 W for 1.5 m, in the case that only one evaporator was heated, evaporator 1 can transport 80 W for 1.5 m, while eva- porator 2 can transport 120 W for 1.5 m. Two flow regulators were installed near the confluence of liquid line to prevent uncondensed vapor penetrating into returning liquid when the tempera- ture difference exists between two radiators. In the case that the heat load at both evaporators were 40/40 W and one radiator was heated, the flow regulator1 can tolerate the 160 W of heat load which was supplied to radiator1 while the flow regulator2 can tolerate the 100 W of heat load which was supplied to radiator2. To demonstrate the multiple loop heat pipe’s startup behavior at lowheat load, each of the compensation chamber was preheated to change the initial distribution of liquid and vapor in the evaporator and compensation chamber, in the result, each evaporator can start up at 5W through preheating.
机译:多回路热管是一种高性能的热传输设备。进行这项工作以确认多回路热管在热真空环境下与工作流体氨一起工作的性能。设计并制造了一个带有两个蒸发器和两个辐射器的小型多回路热管。然后进行热真空测试。加热器固定在两个蒸发器,两个散热器和两个补偿室上。在两个蒸发器均被加热的情况下,多回​​路热管可以输送120/120 W的功率为1.5 m,在仅加热一个蒸发器的情况下,蒸发器1的功率可以输送80 W的功率为1.5 m,而蒸发器2可以运输120 W 1.5 m。在液流汇合处附近安装了两个流量调节器,以防止当两个散热器之间存在温度差时,未凝结的蒸气渗透到返回的液体中。在两个蒸发器的热负荷均为40/40 W并加热一个散热器的情况下,流量调节器1可以承受向散热器1提供的160 W热负荷,而流量调节器2可以承受100 W的热负荷。供给散热器2。为了演示多回路热管在低热负荷下的启动行为,对每个补偿室进行了预热,以改变蒸发器和补偿室中液体和蒸气的初始分布,结果,每个蒸发器可以通过预热以5W的功率启动。

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