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Thermal performance analysis closed wet cooling tower

机译:热性能分析封闭式湿式冷却塔

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摘要

A detailed model was developed and employed to examine the thermal performance of a closed wet cooling tower. The model is capable of predicting the variation of air thermodynamic properties, sprayed and serpentine water temperature as well as heat transfer rates exchanged between air and falling water stream inside the indirect wet cooling tower. The reliability of simulations was tested against experimental data obtained from the literature. A parametric study was conducted to evaluate the thermal behaviour of the indirect cooling tower under various air mass flowrates, serpentine water mass flowrates and inlet temperatures. The results of the theoretical investigation revealed an increase in cooling capacity and percentage loss of sprayed water due to evaporation, with increasing air mass flowrate. On the other hand, the increase of serpentine water mass flowrate resulted in slight increase in the overall temperature reduction of serpentine water. The effect of variable serpentine water inlet temperature on thermal performance of the indirect wet cooling tower was insignificant compared to other cases.
机译:开发了详细的模型并用于检查封闭的湿式冷却塔的热性能。该模型能够预测间接湿式冷却塔内空气热力学特性,喷雾和蛇形水温以及空气与下降水流之间交换的热传递率的变化。根据从文献中获得的实验数据测试了仿真的可靠性。进行了参数研究,以评估间接冷却塔在各种空气质量流量,蛇形水质量流量和入口温度下的热行为。理论研究的结果表明,随着空气质量流量的增加,冷却能力和由于蒸发而导致的喷水损失百分比增加。另一方面,蛇纹石水质量流量的增加导致蛇纹石水的总体温度降低略有增加。与其他情况相比,蛇形进水温度的变化对间接湿式冷却塔热性能的影响微不足道。

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