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Numerical analysis of heat and mass transfer in the capillary structure of a loop heat pipe

机译:回路热管毛细管结构内传热传质的数值分析

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摘要

The heat and mass transfer in the capillary porous structure of a loop heat pipe (LHP) is numerically studied and the LHP boiling limit is investigated. The mass, momentum and energy equations are solved numerically using the finite element method for an evaporator cross section. When a separate vapor region is formed inside the capillary structure, the shape of the free boundary is calculated by satisfying the mass and energy balance conditions at the interface. The superheat limits in the capillary structure are estimated by using the cluster nucleation theory. An explanation is provided for the robustness of LHPs to the boiling limit.
机译:对环形热管(LHP)的毛细管多孔结构中的传热和传质进行了数值研究,并研究了LHP的沸腾极限。使用蒸发器横截面的有限元方法对质量,动量和能量方程进行数值求解。当在毛细管结构内部形成单独的蒸汽区域时,通过满足界面处的质量和能量平衡条件,可以计算自由边界的形状。毛细管结构中的过热极限是通过使用簇成核理论估算的。提供了对LHP到沸腾极限的鲁棒性的解释。

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