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Effect of external factors on the operating characteristics of a copper-water loop heat pipe

机译:外部因素对铜水回路热管运行特性的影响

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The paper presents operating characteristics of a copper-water loop heat pipe (LHP) developed for the use in cooling systems of servers for heat transfer from heat-tensioned elements of electronics to peripheral sections or an outer circulation cooling loop beyond the server. The LHP effective length was 400 mm. The device was provided with a flat-oval evaporator. Its thickness, width and length were equal to 7 mm, 42 mm and 80 mm, respectively. The evaporator was equipped with a thermal interface whose heating zone measured 30 mm × 30 mm. The aim of the research work was to determine the effect of external factors such as the device orientation, the condenser cooling temperature and the condition of heat exchange with the surroundings, on the LHP operating performances. The tests were conducted at the unfavorable LHP slopes from 0° to +60° and heat-sink temperatures from 20 ℃ to 80 ℃, and also in different conditions of heat exchange with the outside ambient. The investigation results are presented in the range of heat loads from 20 to 600 W. It has been shown that the slope dependence of the LHP heat-transfer capacity decreases with increasing heat-sink temperature and practically disappears at a value of the latter of 80 ℃. In this case the LHP thermal resistance decreases too and reaches a minimum value of 0.02 ℃/W in the range of heat loads from 400 to 600 W.
机译:本文介绍了为在服务器的冷却系统中使用而开发的铜水回路热管(LHP)的操作特性,该热量用于将电子从受热电子元件传到服务器的外围部分或外部循环冷却回路。 LHP有效长度为400mm。该装置配备有椭圆形的蒸发器。它的厚度,宽度和长度分别等于7毫米,42毫米和80毫米。蒸发器配备了一个热界面,其加热区域为30 mm×30 mm。研究工作的目的是确定外部因素(如设备方向,冷凝器冷却温度以及与周围环境的热交换条件)对LHP运行性能的影响。测试在不利的LHP斜率(从0°到+ 60°)和散热器温度从20℃到80℃,以及在与外界环境进行热交换的不同条件下进行。研究结果显示在20至600 W的热负荷范围内。研究表明,LHP传热能力的斜率依赖性随着散热器温度的升高而降低,而在后者的值为80时实际上消失了。 ℃。在这种情况下,LHP热阻也会降低,并且在400至600 W的热负荷范围内达到0.02℃/ W的最小值。

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