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Heat transfer analysis of a loop heat pipe with biporous wicks

机译:双孔灯芯回路热管的传热分析

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Because the evaporative heat transfer of a wick structure in a loop heat pipe is exceedingly sensitive to the internal volume fractions of liquid and vapor phases, the purpose of this study was to investigate the evaporative heat transfer of various biporous wick parameters by controlling the particle size of pore former, the pore former content, and the sintering temperature. A statistical experiment was carried out to analyze the evaporative heat transfer of the biporous wicks and to understand the effects of the parameters more effectively. The statistical analysis indicated a clear and strong relationship between the effect of the pore former content and the evaporative heat transfer of a biporous wick. This is because the pore former content had a great influence on the probability of large interconnecting pores and an extended surface area for liquid film evaporation in a biporous wick. Experimental results also showed that, at the sink temperature of 10 ℃ and the allowable evaporator temperature of 85 ℃, the evaporative heat transfer coefficient of the biporous wick, which reached a maximum value of 64,000 W/m~2 K, was approximately six times higher than that of the monoporous wick.
机译:由于回路热管中芯吸结构的蒸发传热对液相和气相的内部体积分数极为敏感,因此本研究的目的是通过控制粒径来研究各种双孔芯吸参数的蒸发传热成孔剂的组成,成孔剂含量和烧结温度。进行了统计实验,以分析双孔灯芯的蒸发传热并更有效地了解参数的影响。统计分析表明,成孔剂含量的影响与双孔芯的蒸发传热之间存在清晰而牢固的关系。这是因为成孔剂的含量对双孔芯中大的连通孔的可能性以及液膜蒸发的表面积增加具有很大的影响。实验结果还表明,在水槽温度为10℃,蒸发器允许温度为85℃的情况下,双孔灯芯的蒸发传热系数达到最大值64,000 W / m〜2 K,约为其六倍。高于单孔灯芯。

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