平面平行电极几何中弱单极注入诱导的湍流对流

P. Atten, B. Malraison
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引用次数: 1

摘要

研究了绝缘液体在弱单极注入作用下的紊流电对流运动。数量级分析的发展,考虑两个边界层相邻的电极,一个核心和中间区域。推导了电对流体系的主要特征,并用于预测在浮力仅起微不足道作用的条件下可以实现的传热。推导了弱注入电对流时典型湍流速度的变化规律,以及粘滞和惯性控制两种情况下努塞尔数随电参数的变化规律。用不同粘度的油类进行了实验,验证了所得规律。对于雷诺数对流,实验结果支持上述分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Turbulent convection induced by weak unipolar injection in plane parallel electrode geometry
The turbulent electroconvective motion of an insulating liquid subjected to weak unipolar injection is examined in regimes of dominant viscous effects and dominant inertia effects. Order-of-magnitude analyses are developed which consider two boundary layers adjacent to the electrodes, a core and intermediate regions. The main features of the electroconvective regimes are derived and used to predict the heat transfer that can be achieved in conditions where buoyancy plays only a negligible role. Laws of variation of the typical turbulent velocity for weak injection electroconvection and of the Nusselt number with the electrical parameters for both viscous and inertially dominated regimes are derived. An experiment using oils of different viscosities was performed to test the obtained laws. For Reynolds number convection, the experimental results support the analysis.<>
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