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EHD enhanced heat transfer in wavy channel

机译:EHD增强了波浪通道中的传热

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Heat transfer enhancement with electrohydrodynamic (EHD) technique in laminar forced convection inside a wavy channel with different wire electrode arrangements is numerically investigated. The electric field is generated by the wire electrodes charged with DC high voltage. The mathematical modeling includes the interactions among electric field, flow field, and temperature field. The simulation is firstly conducted with the experimental data in case of rectangular flat channel and the results agree very well. Then the modeling is carried out in the case of wavy channel. It is found that the heat transfer coefficient with the presence of electric field increases with the supplied voltage but decreases when the Reynolds number and the distance between the wire electrodes and the wall surface are augmented. The heat transfer enhancement is also dependent on the number of the wire electrodes, the number of wave per length, and the wave aspect ratio.
机译:数值研究了采用电液动力学(EHD)技术增强波浪通道内层流强迫对流的传热效果,该波浪通道具有不同的线电极布置。由充有直流高压的线电极产生电场。数学建模包括电场,流场和温度场之间的相互作用。首先在矩形平面通道的情况下利用实验数据进行了仿真,结果非常吻合。然后在波浪通道的情况下进行建模。已经发现,存在电场的情况下,传热系数随着供电电压的增加而增加,但是当雷诺数和导线电极与壁表面之间的距离增加时,传热系数减小。传热的增强还取决于线电极的数量,每长度的波数和波长宽比。

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