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Experimental investigation on transient characteristics of a dual compensation chamber loop heat pipe subjected to acceleration forces

机译:经受加速力的双补偿室环路热管瞬态特性的实验研究

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In this article, an experimental study has been conducted to provide better understanding of the transient characteristics of a dual compensation chamber loop heat pipe (DCCLHP) subjected to the acceleration force. A new acceleration test rig was set up to provide the acceleration up to 11g with three different directions. The heat load on the evaporator ranging from 25W to 300W was applied with the acceleration force simultaneously. Experimental results indicated that the DCCLHP could start up at a small heat load of 25 W and the startup behavior was different under acceleration direction conditions because of the vapor-liquid distribution change in the evaporator and compensation chambers (CCs). Under the current operating conditions, the effect of acceleration force was significant to the operating performance at small heat loads whereas was weak at large heat loads. Experimental results also clearly showed that both acceleration magnitude and direction can alter the operating mode. What's more, it was found that temperature oscillation, reverse flow and evaporation in the evaporator core phenomena occurred under acceleration conditions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,已经进行了实验研究,以便更好地理解经受加速力的双补偿室环路热管(DCCLHP)的瞬态特性。建立了新的加速试验台,以提供高达11G的加速度,三个不同的方向。蒸发器上的热负荷从25W到300W的同时施加加速力。实验结果表明,DCCLHP可以在25W的小热量荷载下启动,并且由于蒸发器和补偿室(CCS)的蒸汽液体分布变化,启动行为在加速度方向条件下不同。在当前的操作条件下,加速力的效果对于小热量负荷的操作性能具有重要意义,而在大热负荷下弱。实验结果还清楚地表明,加速度幅度和方向都可以改变操作模式。更重要的是,发现在加速条件下发生蒸发器核心现象中的温度振荡,逆流和蒸发。 (c)2017 Elsevier Ltd.保留所有权利。

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