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EHD conduction-driven enhancement of critical heat flux in pool boiling

机译:EHD传导驱动的池沸腾临界热通量的增强

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When a liquid undergoes pool boiling, there is a critical heat flux level at which the departing vapor bubbles start to inhibit the flow of fresh liquid to the heated surface. A number of methods to enhance the critical heat flux of pool boiling have been considered, including electrohydrodynamic (EHD) enhancement. In these studies, the heater surface has generally been electrically grounded and a high-voltage electrode has been placed a short distance away from the heater surface to create a high intensity field near the heater. The resulting configuration produces a dielectrophoretic force on the vapor bubbles to promote vapor removal. However, the high voltage electrode can also act as a physical barrier to the incoming liquid and the departing vapor. The present study considers a different technique for EHD-enhancement of critical heat flux. EHD conduction-type electrodes are embedded into the heater surface and used to pump liquid along the heated surface. The embedding of this pumping technique into the heater thereby promotes wetting of the surface and subsequently delivers sizeable enhancements to the heat transfer. The effect of a variety of applied voltages on the boiling curve and the critical heat flux point are quantified.
机译:当液体经历池沸腾时,存在临界的热通量水平,在该水平上,离开的蒸气泡开始抑制新鲜液体流向受热表面。已经考虑了许多提高池沸腾临界热通量的方法,包括提高电液动力学(EHD)。在这些研究中,加热器表面通常已接地,并且高压电极已放置在距加热器表面很短的距离处,以在加热器附近产生高强度场。所得的构造在气泡上产生介电泳力,以促进蒸气的去除。然而,高压电极也可以充当对进入的液体和离开的蒸气的物理屏障。本研究考虑了EHD增强临界热通量的另一种技术。 EHD传导型电极嵌入加热器表面,用于沿加热表面泵送液体。该泵送技术嵌入加热器中,从而促进了表面的润湿并随后为传热提供了可观的增强。量化了各种施加电压对沸腾曲线和临界热通量点的影响。

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