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Effects of Gravity on the Performance of Pulsating Heat Pipes

机译:重力对脉动热管性能的影响

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Pulsating heat pipes made of a thin aluminium plate (250 x 60 x 2.2 mm) with small internal channels and charged with a refrigerant (R-114) have been tested under normal to high gravity (1-2.5 g_0) and reduced gravity (~+-0.02 g_0) levels to investigate the effect of gravity on their heat transport characteristics. Reduced gravity experiments were performed aboard Falcon 20 aircraft flying parabolic trajectories, yielding about 20 s of reduced gravity at ~ +-0.02 g_0. Under normal and hypergravity conditions, both the orientation of the pulsating heat pipe and locations of the heated and cooled sections affected the heat transfer performance. For example, large temperature fluctuations were observed when the heat pipe was oriented vertically and heated at the top. Under reduced gravity, however, the heat pipes showed better operating and heat transport performance than that under normal and hypergravity. These experiments have, for the first time, confirmed that pulsating heat pipes are capable of operating satisfactorily under reduced gravity and, thus, that they should be suitable for deployment in space applications. A theoretical analysis revealed the possibility that this type of a heat pipe with larger channel diameters (up to 5 mm for R114 as a working fluid) could work under microgravity, though they may not work on the ground.
机译:脉动热管由薄铝板(250 x 60 x 2.2毫米)制成,内部通道较小,并充有制冷剂(R-114),已在正常重力至高重力(1-2.5 g_0)和降低重力(〜 + -0.02 g_0)含量,以研究重力对其传热特性的影响。在猎鹰20飞机的抛物线飞行轨迹上进行了重力降低实验,在〜+ -0.02 g_0时产生了约20 s的重力降低。在正常和超重力条件下,脉动热管的方向以及加热和冷却部分的位置都会影响传热性能。例如,当热管垂直定向并在顶部加热时,观察到较大的温度波动。但是,在重力降低的情况下,热管的工作和传热性能要比普通重力和超重力下的更好。这些实验首次证实脉动热管能够在重力降低的情况下令人满意地工作,因此,它们应适合在空间应用中使用。理论分析表明,这种具有较大通道直径(对于R114作为工作流体,最大直径为5毫米)的热管可以在微重力下工作,尽管它们可能无法在地面上工作。

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