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Effects of electrode location on EHD-enhanced natural convection in an enclosure

机译:电极位置对外壳中EHD增强自然对流的影响

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Numerical results are presented for natural convection in an enclosure under the influence of electric field. The geometry considered is a two-dimensional cavity with an aspect ratio of 5. The electrical field is generated by positive corona from an electrode wire changed with a high dc voltage. Three wire locations have been considered, which result in symmetric and non-symmetric electric fields. Numerical calculations have covered a wide range of parameters (i.e., V_o chemical bounds 12, 15 and 18 kV, 10~3 =< Ra =<10~6). In the presence of electric field, the flow and temperature fields may reach a steady, steady-periodic or non-periodic state. Flor low Rayleigh numbers, it is observed that the flow and temperature fields are basically oscillatory in nature. When the Rayleight number is sufficiently increased, a steady state may be reached. Due to the oscillaory flows, there is a significant increase in heat transfer. It is found that heat transfer ehancmenet increases with the applied voltage but decreases with the Rayleight number. In addition, it is found that heat transfer enhancement can be maximized by placing the electrode toward the leading edge of the heat transfer surface, that is, to perturb the thermal bounary alyer as early as it beins to develop.
机译:在电场影响下的外壳中的自然对流中提出了数值结果。考虑的几何形状是具有宽高比的二维腔。电场由来自具有高直流电压的电极线改变的电极线产生电场。已经考虑了三个线位置,从而导致对称和非对称电场。数值计算涵盖了各种参数(即,V_O化学界12,15和18kV,10〜3 =

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