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CFD simulation of wet cooling towers

机译:湿式冷却塔的CFD模拟

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Heat and mass transfer inside a natural draft wet cooling tower (NDWCT) have been investigated numerically under different operating and crosswind conditions. The three-dimensional CFD model has utilized the standard k-epsilon turbulence model as the turbulence closure. The current simulation has adopted both the Eulerian approach for the air phase and the Lagrangian approach for the water phase. The film nature of the water flow in the fill zone has been approximated by droplets flow with a given velocity. The required heat and mass transfer have been achieved by controlling the droplet velocity. At that specific droplet velocity, effects of the following operating parameters on the thermal performance of the NDWCT have been investigated: droplet diameter, inlet water temperature, number of nozzles, water flow rate and number of tracks per nozzle. As a result, the effect of crosswind velocity on the thermal performance has been found to be significant. Crosswinds with velocity magnitude higher than 7.5 m/s have enhanced the thermal performance of the NDWCT. (c) 2005 Elsevier Ltd. All rights reserved.
机译:在不同的运行和侧风条件下,对自然通风湿式冷却塔(NDWCT)内部的传热和传质进行了数值研究。三维CFD模型已将标准k-ε湍流模型用作湍流闭合。当前的模拟对空气相采用了欧拉方法,对水相采用了拉格朗日方法。填充区域中水流的薄膜性质已被以给定速度的液滴流近似。通过控制液滴速度已经实现了所需的热量和质量传递。在特定的液滴速度下,研究了以下操作参数对NDWCT的热性能的影响:液滴直径,进水温度,喷嘴数量,水流速和每个喷嘴的走线数量。结果,发现侧风速度对热性能的影响是显着的。速度大于7.5 m / s的侧风增强了NDWCT的热性能。 (c)2005 Elsevier Ltd.保留所有权利。

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