单组分水平环形通道中的电流体动力(EHD)流动和对流沸腾增强

J. Cotton, Jen-Shih Chang, M. Shoukri, T. Smith-Pollard
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引用次数: 5

摘要

为了探索EHD诱导流动和强化传热的机理,在单道逆流换热器中对制冷剂HFC-134a的管侧沸腾换热进行了实验研究。电极的位置与管子同心。实验条件为:进气质量为0% ~ 60%,质量通量为100 ~ 500 kg/m2s,热流为10 ~ 20 kW/m2,直流电压为0 ~ 8 kV。通过量纲分析分析了EHD效应的阈值,并预测当介电瑞利数与液体雷诺数的平方(E ε≈Re l2)相同数量级时,EHD力变得显著。这一标准得到了实验证据的支持。流动可视化实验表明,当所提出的无量纲准则满足时,EHD体力可能对液相产生强烈影响,从而影响通道内的流型。不同的流动结构明显影响传热和压力损失,在任何试图确定外加电场的影响时都需要考虑到这一点。
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Electrohydrodynamic (EHD) Flow and Convective Boiling Augmentation in Single-Component Horizontal Annular Channels
In order to explore the mechanics of EHD induced flow and heat transfer augmentation, an experimental study of the tube-side boiling heat transfer of refrigerant HFC-134a has been conducted in a single-pass, counter-flow heat exchanger. The electrode position was arranged concentric to the tube. Experiments are conducted for inlet qualities of 0% to 60%, mass fluxes from 100 kg/m2s to 500 kg/m2s, heat fluxes of 10 kW/m2 and 20 kW/m2, and applied voltage from 0 kV to 8 kV DC. The threshold of EHD effects were analysed by a proposed dimensional analysis which predicts that the EHD forces become significant when the Dielectric Electric Rayleigh number is of the same order of magnitude as the square of the liquid Reynolds number, Eℓε ≈ Re ℓ 2 . This criterion is supported by experimental evidence. Flow visualization experiments have shown that, when the proposed dimensionless criterion is satisfied, EHD body forces may have a strong influence on the liquid-phase and consequently the flow pattern within the channel. The various flow configurations clearly affect heat transfer and pressure loss and need to be considered in any attempt to identify the effects of an applied electric field.
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