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Numerical simulation of flow in a natural draft wet cooling tower - The effect of radial thermofluid fields

机译:自然通风湿式冷却塔内流动的数值模拟-径向热流体场的影响。

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This paper presents a two-dimensional axisymmetric two-phase simulation of the heat and mass transfer inside a natural draft wet cooling tower with particular emphasis on determining the extent of the non-uniformities across the tower. The water droplets in the spray and rain zones are represented with droplet trajectories written in Lagrangian form. The heat and mass transfer in the fill is represented using source terms implemented with Poppe style transfer coefficients. These coefficients are defined through empirical correlations which capture the functional dependence of the system. The model has the capability to represent non-uniformities in fill layout and water distribution, which traditional one-dimensional models are unable to resolve. The results show a largely uniform velocity profile across the tower radius with the greatest non-uniformity occurring at the outer edge of the tower. The water outlet temperature was found to vary by 6 K (~40%) between the tower centre and exterior under reference tower conditions. This is largely due to the rise in air temperature and humidity through the rain zone. The considerable non-uniformity of heat transfer across the tower is shown to be tied to the performance of the rain zone. The effect of tower inlet height on radial non-uniformity is surprisingly small but the model is very sensitive to changes in water flow rate. At small fill depths the water temperatures entering the rain zone tend to be higher, which in turn slightly increases the heat transfer rate here and the over-all non-uniformity in the tower.
机译:本文提出了自然通风湿式冷却塔内部传热和传质的二维轴对称两相模拟,特别着重于确定整个塔内非均匀性的程度。喷雾区和雨区中的水滴以拉格朗日形式书写的水滴轨迹表示。填充中的传热和传质是通过使用Poppe样式传递系数实现的源项来表示的。这些系数是通过经验相关性定义的,这些相关性捕获了系统的功能依赖性。该模型具有表示填充布局和水分布不均匀性的能力,而传统的一维模型则无法解决。结果表明,整个塔架半径上的速度分布基本均匀,并且最大不均匀性出现在塔架的外边缘。发现在参考塔架条件下,塔架中心和外部之间的出水温度变化6 K(〜40%)。这主要是由于穿过雨区的空气温度和湿度的上升。整个塔架上传热的显着不均匀性被证明与雨区的性能有关。塔入口高度对径向不均匀性的影响令人惊讶地很小,但是该模型对水流量的变化非常敏感。在较小的填充深度下,进入雨水区的水温往往会更高,这反过来会稍微增加此处的传热速率以及塔中整体的不均匀性。

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