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Operation characteristics of a new-type loop heat pipe (LHP) with wick separated from heating surface in the evaporator

机译:用芯片中的灯芯与蒸发器中的加热表面分开的新型环路热管(LHP)的操作特性

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The loop heat pipe (LHP) has been widely used for cooling devices with high heat flux. In addition to the capillary pumping force, the pressure head due to evaporation has been assumed to play an important role in the circulation of working fluid. Based on such a hypothesis, a new LHP is designed, in which the wick is separated from the heating surface in the evaporator. Experiments show that such a LHP can start up successfully and reach steady operation, which indirectly verified the hypothesis. The influences of heating power, height of steam chamber, pore radius and porosity of wick are comprehensively investigated. The results show that the start-up time of the new-designed LHP is shorter and the temperature fluctuation is smaller at higher heating power. The steam chamber height has clear impacts on the start-up time and the thermal resistance. The start-up time with the steam chamber height of 2 mm is shorter than that of 3 mm, but the thermal resistance is relatively higher. Moreover, a larger pore radius and a higher porosity of the wick can lead to a shorter start-up time and a smaller thermal resistance of the new LHP. (C) 2017 Elsevier Ltd. All rights reserved.
机译:环路热管(LHP)已广泛用于具有高热通量的冷却装置。除了毛细管泵送力之外,假设引起的压力头在工作流体的循环中起着重要作用。基于这样的假设,设计了一种新的LHP,其中灯芯与蒸发器中的加热表面分离。实验表明,这种LHP可以成功启动并达到稳定的操作,间接验证了假设。全面研究了加热功率,蒸汽室,孔径和孔隙率的影响。结果表明,新设计的LHP的启动时间较短,加热功率更高的温度波动较小。蒸汽室高度对启动时间和热阻产生了明显的影响。蒸汽室高度为2毫米的启动时间短于3mm,但热阻相对较高。此外,孔径较大的孔径和芯的较高孔隙率可以导致较短的启动时间和新LHP的较小的热阻。 (c)2017 Elsevier Ltd.保留所有权利。

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