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分析了小型平板CPL蒸发器毛细多孔芯上下表面温差对启动的影响,建立了蒸发器满液启动的数学模型.结果表明,对不同的金属外壁,多孔芯上下表面平均温差存在一个最大值,铜壁时,温差较小,侧壁效应明显;采用不锈钢壁及上壁铜、侧壁下壁不锈钢时,温差大,侧壁效应小;采用不锈钢外壁时蒸发器加热面的温度过高.上壁采用导热系数大、侧壁下壁为导热系数小的金属对小型平板CPL蒸发器的正常启动以及降低加热表面温度非常有利.

参考文献

[1] E. Pouzet;J.-L. Joly;V. Platel;J.-Y. Grandpeix;C. Butto .Dynamic response of a capillary pumped loop subjected to various heat load transients[J].International Journal of Heat and Mass Transfer,2004(10/11):2293-2316.
[2] 曲伟,伊勇,侯增祺.毛细抽吸两相流体回路(CPL)的控温特性和极限特性研究[J].节能技术,1998(02):9.
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