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首页> 外文期刊>Annals of the New York Academy of Sciences >Heat Transfer Enhancement by Electric Fields in Several Heat Exchange Regimes
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Heat Transfer Enhancement by Electric Fields in Several Heat Exchange Regimes

机译:电场在几种热交换条件下的传热增强

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摘要

With the present article, the authors summarize over 15 years of work dedicated to studying the effects of the electrical and the gravitational force fields on two-phase and single-phase thermofluid dynamics. Results obtained on several microgravity platforms are presented and the role played by the electric field in the different heat transfer processes is analyzed. In particular, the regimes of nucleate boiling and film boiling are treated. Also, the parameters controlling the liquid-vapor interface instability and the main consequences regarding the critical heat flux (CHF) are outlined. In the final section, the promising technique of ion injection for efficient heat transfer enhancement in single-phase liquids is described, together with the main results obtained under different flow regimes and geometries. The following dielectrics were compared: R113, Vertrel XF, and FC-72 for the pool boiling research; again FC-72 and HFE-7100 for the single-phase convection heat transfer experiments.
机译:在本文中,作者总结了超过15年的工作,这些工作致力于研究电场和重力场对两相和单相热流体动力学的影响。介绍了在几个微重力平台上获得的结果,并分析了电场在不同传热过程中所起的作用。特别地,处理成核沸腾和膜沸腾的方式。此外,还概述了控制液体-蒸汽界面不稳定性的参数以及有关临界热通量(CHF)的主要后果。在最后一节中,将介绍用于提高单相液体传热效率的离子注入技术,以及在不同流动方式和几何形状下获得的主要结果。比较了以下电介质:用于池沸腾研究的R113,Vertrel XF和FC-72;再次使用FC-72和HFE-7100进行单相对流传热实验。

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