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首页> 外文期刊>Journal of Electrostatics >Numerical investigation of EHD effects on heat transfer enhancement and flow pattern of R-134a two phase flow
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Numerical investigation of EHD effects on heat transfer enhancement and flow pattern of R-134a two phase flow

机译:EHD对R-134a两相流传热增强和流型影响的数值研究

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摘要

In this paper the effects of electrohydrodynamics (EHD) on heat transfer enhancement and flow pattern of R134a two-phase mixture, flowing in a horizontal tube, were numerically investigated. A uniform DC electric field was applied through a circular stainless steel rod along the centerline of tube, while the tube was considered as a grounded electrode. The simulations, in order to investigate the EHD mechanism, were performed for a constant heat flux 2000 W/m(2), voltages between 0 and 5 kV, inlet volume fractions 65% and 85%, mass fluxes from 30 kg/m(2)s to 50 kg/m(2)s and electrode diameters between 1.57 mm and 2.4 mm. These flow conditions correspond to stratified flow. The flow regime redistributions under the applied electric field was obtained. The results show that the steady state condition was occurred at the time about 900 ms. According to the results, enhancement ratio is directly proportional to voltage, and it is reversely proportional to electrode diameter, mass flux and inlet volume fraction. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文数值研究了电动流体力学(EHD)对在水平管中流动的R134a两相混合物的传热增强和流动模式的影响。沿着管的中心线通过圆形不锈钢棒施加均匀的DC电场,同时将管视为接地电极。为了研究EHD机制,对恒定的热通量2000 W / m(2),电压在0到5 kV之间,入口体积分数为65%和85%,质量通量从30 kg / m( 2)s至50 kg / m(2)s,电极直径在1.57 mm至2.4 mm之间。这些流动条件对应于分层流动。获得了施加电场下的流动态重新分布。结果表明,稳态条件发生在大约900 ms的时间。根据结果​​,增强比与电压成正比,与电极直径,质量通量和入口体积分数成反比。 (C)2016 Elsevier B.V.保留所有权利。

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