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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Deciphering the heat and mass transfer behaviors of staggered tube bundles in a closed wet cooling tower using a 3-D VOF model
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Deciphering the heat and mass transfer behaviors of staggered tube bundles in a closed wet cooling tower using a 3-D VOF model

机译:使用3-D VOF模型将交错管束的热量和质量传递行为解体在闭合湿冷塔中

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摘要

This article presents a three-dimensional CFD model to describe the counter-current air-water flow across the staggered tube bundles in a bench-scale closed wet cooling tower by combining VOF multiphase method and SST k-omega turbulence model. The proposed model can investigate the interfacial heat-mass transfer and complex interaction mechanisms among multiple tubes. Through adding the shear force term and water evaporation in the model, the circumferential distribution of the falling film and air humidity fields are obtained, and the effects of the spray density and the air velocity on the falling film flow mode, air humidity, and transfer process are studied. The results show that, the thinnest water film and maximum evaporation rate are obtained when the circumferential angle is 75 degrees and the spray density is 0.048 kg m(-1) s(-1), respectively; the air Reynolds number has a greater influence on multiphase heat and mass transfers than that of the spray water Reynolds number.
机译:本文介绍了三维CFD模型,以描述通过组合VOF多相方法和SST k-Omega湍流模型来描述在台型闭式湿冷冷却塔中交错管束的反电流空气流动。 所提出的模型可以研究多个管中的界面热传质和复杂的相互作用机制。 通过在模型中添加剪切力项和水蒸发,获得了下降膜和空气湿度场的圆周分布,以及喷射密度和空气速度对下降薄膜流动模式,空气湿度和转移的影响 研究了过程。 结果表明,当周向角度为75度时获得最薄的水膜和最大蒸发速率,并且喷射密度分别为0.048kg m(-1)s(-1); 空气雷诺数对多相热量和质量转移的影响大于喷射水雷诺数。

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