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Effects of Ionic Jets on Nucleate Boiling and CHF on a Horizontal Plate

机译:离子流对水平平板上核沸腾和CHF的影响

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The application of a strong electric field within a dielectric medium can produce a jet-like motion of ionized liquid from a high-voltage electrode to a grounded heated plate. Ionic jet impingement on the upper surface of a horizontal plate where boiling is occurring significantly modifies the boiling curve. Heat transfer enhancement has been observed both at saturation temperature and in subcooled conditions, up to a regime of fully-developed nucleate boiling. In addition, the ionic jet is capable of preventing the formation of a vapor film on the boiling surface up to much higher heat fluxes. The working fluids are FC-72 and HFE-7100. Two different high-voltage electrodes have been tested: a single pin and an array of 7 points. This novel electrohydrodynamic technique of ionic-jet impingement boiling can greatly increase, with negligible or very low power input, both the heat transfer coefficients on a heated plate and the critical heat flux for the transition to the film boiling regime (up to 160%).
机译:在介电介质中施加强电场可以使离子化液体从高压电极向接地的加热板产生喷射状运动。离子流撞击在发生沸腾的水平板上表面时,会大大改变沸腾曲线。在饱和温度和过冷条件下,直至充分发展的核沸腾状态,都观察到传热增强。另外,离子射流能够防止在沸腾表面上形成蒸汽膜,直至高得多的热通量。工作流体为FC-72和HFE-7100。已经测试了两种不同的高压电极:单个引脚和7点阵列。只需很少的或非常低的功率输入,这种新颖的离子射流冲击沸腾电流体动力学技术就可以大大提高加热板上的传热系数和过渡到薄膜沸腾状态的临界热通量(最高160%) 。

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