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The effect of pulsed electric fields on horizontal tube side convective condensation

机译:脉冲电场对水平管侧对流冷凝的影响

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The effect of pulsed electric fields on two-phase flow patterns, heat transfer and pressure drop in horizontal tube side convective condensation was investigated. Experiments were performed for an applied pulse voltage of 8 kV at pulse repetition rates in the range of 0.5 Hz-1.5 kHz and duty cycles of 25%, 50% and 75%. Three mass fluxes of 55,100, and 150 kg/m~2 s were tested with an average vapour quality of 45% which corresponds to an initially stratified flow. The voltage was applied through a central electrode along the centerline of the tube. Changing the pulse repetition rate and duty cycle results in different flow patterns and therefore in different values of heat transfer and pressure drop. For a given mass flux, the heat transfer enhancement due to the applied voltage decreased with the pulse repetition rate and reached a plateau. The pressure drop ratio, however, increased with pulse repetition rate and reached a maximum before decreasing with a further increase in pulse repetition rate.
机译:研究了脉冲电场对水平管侧对流冷凝中两相流型,传热和压降的影响。针对施加的8 kV脉冲电压以0.5 Hz-1.5 kHz的脉冲重复频率以及25%,50%和75%的占空比进行实验。测试了三种质量通量分别为55,100和150 kg / m〜2 s,平均蒸汽质量为45%,对应于最初的分层流。通过中心电极沿着管的中心线施加电压。改变脉冲重复频率和占空比会导致不同的流动模式,从而导致不同的传热值和压降值。对于给定的质量通量,由于施加的电压导致的传热增强随着脉冲重复频率的降低而下降,并达到平稳状态。然而,压降率随着脉冲重复率而增加,并且在随着脉冲重复率的进一步增加而减小之前达到最大值。

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