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Electrical Field Effects on Boiling Heat Transfer of Low Global Warming Potential Coolant

机译:关于沸腾热传递低全球变暖潜能冷却剂的电场影响

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This paper presents an investigation of the influence of d.c. uniform electric field on boiling heat transfer characteristics of Fluorinated ketone (FK). One potential use of FK in high voltage plant is as the fluid within a thermosyphon, replacing conventional cooling that requires pumps and/or fans. The electric field's effect on the onset of boiling, nucleate boiling curve and critical heat transfer of FK was experimentally studied using a mesh-plane electrode arrangement. For this purpose, with the assistance of a steady state thermal finite element analysis (FEA) model, a novel grounded electrode with a ‘vacuum jacket’ and temperature sensor array was designed and manufactured. Moreover, detailed coolant boiling stages were observed and recorded via a high-speed image system. textbfThe results show that d.c. field reduces the first boiling hysteresis on FK coolants i.e. nucleate boiling starts at a lower superheated temperature. The d.e. field also increases the effective heat transfer coefficient. The significance of these results is that there is an electrohydrodynamic enhancement of the key heat transfer properties of FK due to the presence of a d.c. field.
机译:本文提出了对D.C的影响的调查纺丝酮酮(FK)沸腾传热特性均匀电场。在高压厂中的一个潜在使用FK是热旋流器内的流体,更换需要泵和/或风扇的常规冷却。使用网布平面电极装置实验研究了电场对沸腾,核心沸腾曲线和FK的临界传热和临界传热的影响。为此目的,在稳态热有限元分析(FEA)模型的帮助下,设计并制造了具有“真空夹套”和温度传感器阵列的新型接地电极。此外,通过高速图像系统观察并记录了详细的冷却剂沸腾阶段。 TextBF结果表明D.C.场减少FK冷却剂上的第一沸腾滞后I.。核心沸腾在较低的过热温度下开始。 D.E.领域还增加了有效的传热系数。这些结果的重要性是由于D.C的存在,FK的关键传热性能存在电液动力学增强。场地。

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