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Investigation of pulsations of the operating temperature in a miniature loop heat pipe

机译:微型回路热管中工作温度脉动的研究

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During the operation of miniature loop heat pipes (LHPs) one can observe pulsations of the operating temperature, which depend on the amount of the working fluid, the device orientation in the gravity field and the conditions of the condenser cooling. Intense pulsations, whose amplitude may exceed tens of degrees, arise from the lack of a working fluid in a LHP when a hot condensate or vapor bubbles periodically penetrate into the compensation chamber (CC) and act on the vapor phase in it, increasing its temperature and volume. Changes in the external conditions, for instance, the LHP arrangement in an unfavourable orientation or a more intensive cooling of the condenser with respect to the conditions for which the filling volume was optimal, also contribute to the initiation of intense pulsations of the operating temperature. In both cases one can observe redistribution of the working fluid between the condenser and the CC, as the result of which the liquid phase volume in the latter decreases and overshoots of vapor or a hot condensate there become possible.
机译:在微型回路热管(LHP)的运行过程中,可以观察到工作温度的脉动,这取决于工作流体的量,重力场中设备的方向以及冷凝器冷却的条件。当热的冷凝水或气泡周期性地渗透进入补偿室(CC)并作用于补偿室中的气相时,LHP中缺少工作流体会引起振幅可能超过几十度的强烈脉冲。和数量。外部条件的变化(例如,相对于灌装量最佳的条件而言,LHP布置在不利的方向或冷凝器的强化冷却)也有助于引发强烈的工作温度脉动。在这两种情况下,都可以观察到冷凝器和CC之间工作流体的重新分布,其结果是,后者中的液相体积减少,并且有可能产生蒸汽或热冷凝物超调量。

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