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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermodynamic study of the effects of ambient air conditions on the thermal performance characteristics of a closed wet cooling tower
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Thermodynamic study of the effects of ambient air conditions on the thermal performance characteristics of a closed wet cooling tower

机译:环境空气条件对封闭式湿式冷却塔热性能特性影响的热力学研究

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摘要

A thermodynamic model was developed and used to assess the sensitivity of thermal performance characteristics of a closed wet cooling tower to inlet air conditions. In the present study, three cases of different ambient conditions are considered: In the first case, the average mid-winter and mid-summer conditions as well as the extreme case of high temperature and relative humidity, in Athens (Greece) during summer are considered according to the Greek Regulation for Buildings Energy Performance. In the second case, the varied inlet air relative humidity while the inlet air dry bulb temperature remains constant were taken into account. In the last case, the effects on cooling tower thermal behaviour when the inlet air wet bulb temperature remains constant were examined. The proposed model is capable of predicting the variation of air thermodynamic properties, sprayed water and serpentine water temperature inside the closed wet cooling tower along its height. The reliability of simulations was tested against experimental data, which were obtained from literature. Thus, the proposed model could be used for the design of industrial and domestic applications of conventional air-conditioning systems as well as for sorption cooling systems with solid and liquid desiccants where closed wet cooling towers are used for precooling the liquid solutions. The most important result of this theoretical investigation is that the highest fall of serpentine water temperature and losses of sprayed water are observed for the lowest value of inlet wet bulb temperature. Hence, the thermal effectiveness, which is associated with the temperature reduction of serpentine water as well as the operational cost, which is related to the sprayed water loss due to evaporation, of a closed wet cooling tower depend predominantly on the degree of saturation of inlet air.
机译:开发了一个热力学模型,用于评估封闭式湿式冷却塔的热性能特征对进气状况的敏感性。在本研究中,考虑了三种不同环境条件的情况:在第一种情况下,夏季(雅典)(希腊)的平均冬季和仲夏条件以及高温和相对湿度的极端情况是根据希腊《建筑物能源性能法规》进行了审议。在第二种情况下,考虑了进气干球温度保持恒定的同时变化的进气相对湿度。在最后一种情况下,研究了当进气湿球温度保持恒定时对冷却塔热性能的影响。所提出的模型能够预测封闭的湿式冷却塔内部的空气热力学特性,喷水和蛇形水的温度沿其高度的变化。根据从文献中获得的实验数据对模拟的可靠性进行了测试。因此,该模型可用于设计常规空调系统的工业和家庭应用,以及用于带有固态和液态干燥剂的吸附式冷却系统,其中封闭的湿式冷却塔用于预冷液体溶液。该理论研究的最重要结果是,对于入口湿球温度最低的值,观察到蛇形水温的最高下降和喷水的损失。因此,密闭湿式冷却塔的热效率与蛇形水的温度降低以及运行成本有关,该成本与蒸发引起的喷洒水损失有关,该成本主要取决于入口的饱和度。空气。

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