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Visualization and measurement of periodic reverse flow and boiling fluctuations in a microchannel evaporator of an air-conditioning system

机译:可视化和测量空调系统微通道蒸发器中的周期性逆流和沸腾波动

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This paper presents a simultaneous visualization and measurement on periodic reverse flow and boiling fluctuations of R-134a in a parallel flow microchannel evaporator used for air-conditioning systems. The visualization study shows that the microchannel repeats the transient flow patterns with two stages: liquid rewetting stage, and transient annular evaporating/dewetting stage. Correspondingly, five transient flow patterns are identified along the microchannel: bubbly flow, elongated bubble, liquid lump flow, annular flow, and mist/dryout flow. The reverse flow is observed to begin with the elongated bubble flow at the upstream channel and continue until the transient annular film evaporating/dewetting stage, indicating that the existing immeasurable high pressure within the elongated bubble or at a certain location in the annular flow exceeds the channel inlet and exit pressures. The period of the pressure drop fluctuation and flow pattern alternation are almost identical with that of the reverse flow, and it decreases from 1.49 s to 1.13 s when the average heat flux increases from 14.1 kW/m~2 to 18.3 kW/m~2. The decrease in oscillation period is mainly due to the shortened time interval for the annular film evaporating/dewetting stage.
机译:本文介绍了用于空调系统的平行流微通道蒸发器中R-134a的周期性逆流和沸腾波动的同时可视化和测量。可视化研究表明,微通道通过两个阶段重复了瞬态流动模式:液体再润湿阶段和瞬态环形蒸发/去湿阶段。相应地,沿微通道确定了五个瞬时流动模式:气泡流动,细长气泡,液体团块流动,环形流动和薄雾/干燥流。观察到反向流动始于上游通道处的细长气泡流,并一直持续到瞬态环形薄膜蒸发/去湿阶段,这表明细长气泡内或环形流中某个位置处存在的不可测量的高压超过了通道入口和出口压力。平均热通量从14.1 kW / m〜2增加到18.3 kW / m〜2时,压降波动和流型交替的周期与逆流几乎相同,从1.49 s减小到1.13 s。 。振荡周期的减少主要是由于环形膜蒸发/去湿阶段的时间间隔缩短。

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