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VISUALIZATION OF TWO-PHASE FLOW THROUGH MICROCHANNEL HEAT EXCHANGERS

机译:通过微通道换热器进行的两相流可视化

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摘要

Multiphase flow phenomena in single micro- and mini-channels have been widely studied. Characteristics of two-phase flow through a large array of microchannels are investigated here. An air-water mixture is used to represent the two phases flowing through a microchannel array representative of those employed in practical applications. Flow distribution of the air and water flow across 52 parallel microchannels of 0.3 mm hydraulic diameter is visually investigated using high speed photography. Two microchannel configurations are studied and compared, with mixing features incorporated into the second configuration. Slug and annular flow regimes are observed in the channels. Void fractions and interfacial areas are calculated for each channel from these observations. The flow distribution is tracked at various lengths along the microchannel array sheets. Statistical distributions of void fraction and interfacial area along the microchannel array are measured. The design with mixing features yields improved flow distribution. Void fraction and interfacial area change along the length of the second configuration, indicating a change in fluid distribution among the channels. The void fraction and interfacial area results are used to predict the performance of different microchannel array configurations for heat and mass transfer applications. Results from this study can help inform the design of compact thermal-fluid energy systems.
机译:在单个微通道和迷你通道中的多相流动现象已得到广泛研究。在此研究了通过大量微通道的两相流动特性。空气-水混合物用于表示流过微通道阵列的两相,该微通道阵列代表实际应用中的相。使用高速摄影术目视研究了水力直径为0.3 mm的52个平行微通道上的空气和水的流量分布。研究并比较了两种微通道配置,并将混合功能合并到第二种配置中。在通道中观察到团状和环形流态。从这些观察结果计算出每个通道的空隙率和界面面积。沿着微通道阵列片以各种长度跟踪流量分布。测量沿微通道阵列的空隙率和界面面积的统计分布。具有混合功能的设计可改善流量分配。空隙率和界面面积沿第二构型的长度变化,表明通道之间的流体分布变化。空隙率和界面面积结果用于预测传热和传质应用中不同微通道阵列配置的性能。这项研究的结果可以帮助设计紧凑的热流体能源系统。

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