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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Numerical analysis of heat and mass transfer for water recovery in an evaporative cooling tower
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Numerical analysis of heat and mass transfer for water recovery in an evaporative cooling tower

机译:APS-APS流体动力学部门第70届年会-事件-蒸发冷却塔中水回收的传热和传质的数值分析

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Numerical analysis is performed for water recovery in an evaporative cooling tower using a condensing heat exchanger, which consists of a humid air channel and an ambient dry air channel. The humid air including water vapor produced in an evaporative cooling tower is cooled by the ambient dry air so that the water vapor is condensed and recovered to the liquid water. The conservation eel and an ambient dry air channel. The humid air including water vapor produced in an evaporative cooling tower is cooled by the ambient dry air so that the water vapor is condensed and recovered to the liquid water. The conservation equations of mass, momentum, energy and vapor concentration in each fluid region and the energy equation in a solid region are simultaneously solved with the heat and mass transfer boundary conditions coupled to the effect of condensation on the channel surface of humid air. The present computation demonstrates the condensed water film distribution on the humid air channel, which is caused by the vapor mass transfer between the humid air and the colder water film surface, which is coupled to the indirect heat exchange with the ambient air. Computations are carried out to predict water recovery rate in parallel, counter and cross-flow type heat exchangers. The effects of air flow rate and channel interval on the water recovery rate are quantified.
机译:使用冷凝式热交换器对蒸发冷却塔中的水回收进行了数值分析,该冷凝式热交换器由潮湿空气通道和周围干燥空气通道组成。包含在蒸发冷却塔中产生的水蒸气的湿空气被周围的干燥空气冷却,从而水蒸气被冷凝并回收为液态水。养鳗鱼和周围的干燥空气通道。包含在蒸发冷却塔中产生的水蒸气的湿空气被周围的干燥空气冷却,从而水蒸气被冷凝并回收为液态水。同时利用传热和传质边界条件,再加上湿空气通道表面的冷凝作用,同时求解每个流体区域的质量,动量,能量和蒸气浓度守恒方程以及固体区域的能量方程。本计算结果表明,冷凝水膜在湿空气通道上的分布是由湿空气和较冷的水膜表面之间的蒸汽质量传递引起的,该蒸汽质量传递与与周围空气的间接热交换有关。进行计算以预测平行,逆流和错流式热交换器的水回收率。量化了空气流速和通道间隔对水回收率的影响。

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