首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat and mass transfer during evaporation of thin liquid films confined by nanoporous membranes subjected to air jet impingement
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Heat and mass transfer during evaporation of thin liquid films confined by nanoporous membranes subjected to air jet impingement

机译:蒸发受到空气射流撞击的纳米多孔膜限制的薄膜蒸发过程中的传热和传质

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摘要

Thin liquid films can provide efficient means for heat and mass transfer by supporting a large rate of evaporation, while maintaining temperatures under saturation conditions. The use of nanoporous membranes establishes thin liquid films minimizing the possibility of dryout by exploiting capillary confinement of the fluid. In combination with gas jet impingement, this yields record high heat and mass fluxes. Consequently, for applications relying on efficient heat and mass transfer, such as, phase change cooling of electronics and membrane distillation of water, it is essential to identify and characterize all the underlying transport mechanisms affecting overall performance. A detailed computational analysis of heat and mass transfer is therefore carried out to predict the performance of thin film evaporation. Heat conduction and convection are both found crucial in determining the temperature distribution within the thin film region, which ultimately controls the rate of evaporation from the liquid-vapor interface. Furthermore, the effect of vapor transport from the liquid-vapor interface on overall performance is also assessed. The relative effects of these performance-governing parameters are discussed and quantitatively compared at different operating conditions. The results of the computational analysis are supported by comparison with experiments.
机译:液体薄膜可以通过支持大量的蒸发,同时在饱和条件下保持温度,从而为传热和传质提供有效的手段。通过利用流体的毛细管限制,纳米孔膜的使用建立了薄的液膜,从而最大程度地减小了变干的可能性。与气体喷射撞击相结合,产生的热和质量通量都很高。因此,对于依赖高效传热和传质的应用,例如电子设备的相变冷却和水的膜蒸馏,必须确定和表征影响整体性能的所有潜在传输机制。因此,对传热和传质进行了详细的计算分析,以预测薄膜蒸发的性能。发现热传导和对流都对确定薄膜区域内的温度分布至关重要,而温度分布最终控制了液-液界面的蒸发速率。此外,还评估了从液-气界面传输的蒸气对整体性能的影响。对这些性能控制参数的相对影响进行了讨论,并在不同的工作条件下进行了定量比较。通过与实验的比较来支持计算分析的结果。

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