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Numerical investigation of subcooled flow boiling in segmented finned microchannels

机译:分段翅片微通道中过冷沸腾的数值研究

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摘要

Bubble growth behavior and heat transfer characteristics during subcooled flow boiling in segmented finned microchannels have been numerically investigated. Simulations have been performed for a single row of segmented finned microchannel and predicted results are compared with experimental investigations. Onset of nucleation, formation of bubbles, their growth and movements have been investigated for different values of applied heat flux. Mechanism of bubble expansion without clogging resulting in enhanced heat transfer in segmented finned microchannels has been explained. Temperature and pressure fluctuations during subcooled flow boiling condition have been investigated. It is observed that at high heat flux, thin liquid film trapped between the bubble and channel wall is evaporated leading to localized heating effect. Predicted flow patterns are similar to experimental results. However, simulations over predict the bubble growth rate and heat transfer coefficient.
机译:数值研究了分段翅片微通道中过冷流动沸腾过程中的气泡生长行为和传热特性。已经对单排分段翅片微通道进行了仿真,并将预测结果与实验研究进行了比较。对于施加的热通量的不同值,已经研究了成核的发生,气泡的形成,气泡的生长和运动。已经解释了气泡膨胀而没有阻塞导致分段的翅片微通道中的热传递增强的机理。研究了过冷沸腾条件下的温度和压力波动。观察到在高热通量下,气泡和通道壁之间截留的液体薄膜蒸发,从而导致局部加热效果。预测的流型与实验结果相似。但是,模拟过度预测了气泡的生长速度和传热系数。

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