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Experimental study on nucleate boiling enhancement and bubble dynamic behavior in saturated pool boiling using a nonuniform dc electric field

机译:非均匀直流电场在饱和池沸腾过程中促进核沸腾和气泡动力学行为的实验研究

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In order to investigate the effects of an electric field on the nucleate boiling heat transfer enhancement including bubble dynamic behavior, basic experiments have been performed under saturated pool boiling. In the present study, the working fluid is Freon-113 and the plate-wire electrode is used to generate a steep electric field gradient around the wire. A single-photo/high photography method is applied to measure boiling parameters. The experimental results show the shift of the boiling curve and the delay of ONE and CHF to a higher heat flux by an electric held. These EHD effects are much more considerable when the applied voltage increases. It is confirmed that the mechanisms of EHD nucleate boiling are closely connected with the dynamic behaviors of bubbles. Boiling parameters are investigated by using a high speed camera. The present results show that the boiling parameters are significantly changed by the electric field strength and nonuniformity. The relative contribution of latent heat to boiling heat transfer in an electric field is introduced. At very high voltage, the amount of latent heat transported by bubbles nearly corresponds to the total heat flux. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 23]
机译:为了研究电场对包括气泡动力学行为在内的核沸腾传热增强的影响,已经在饱和池沸腾下进行了基础实验。在本研究中,工作流体为氟利昂113,板线电极用于在导线周围产生陡峭的电场梯度。单张照片/高照度摄影方法用于测量沸腾参数。实验结果表明,通过电保持,沸腾曲线的移动以及ONE和CHF延迟到较高的热通量。当施加的电压增加时,这些EHD效应将更为明显。证实了EHD核沸腾的机理与气泡的动力学行为密切相关。使用高速摄像机研究沸腾参数。目前的结果表明,沸腾参数被电场强度和不均匀性显着改变。介绍了潜热对电场中沸腾传热的相对贡献。在非常高的电压下,气泡传输的潜热几乎等于总热通量。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:23]

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