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Improved Quantification of Exergy Destruction in Mechanical Cooling Tower Considering All Tower Inlet Parameters

机译:考虑塔入口所有参数的机械冷却塔火用破坏的改进量化

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The present work establishes an improved experimentally validated analysis to predict performance and exergy-related parameters of a mechanical draft cooling tower involving wooden splash fills. Unlike earlier studies, which accounted for the effect of at most three tower inlet parameters for the exergy analysis, the present study simultaneously considers all five inlet parameters affecting the tower exergy performance. To simultaneously predict outlet air and water conditions, an optimization algorithm involving discrete functions of dry- and wet-bulb temperatures is used in conjunction with the mathematical model derived from mass and energy conservations within the control volume involving Bosnjakovic correlation. From practical point of view, five inlet parameters such as dry-bulb temperature, relative humidity, water temperature, water, and air flow rates are selected for the exergy analysis. Thereafter, the influence of all inlet parameters on the tower performance is analyzed on various important exergy-related factors. The quantitative analysis reveals that the inlet air humidity, water inlet temperature, and the inlet water mass flow rate significantly influence the air and water exergy changes. The present study also reveals that among the five inlet parameters, the water temperature, air humidity, and air mass flow rate are primarily responsible for the exergy destruction. Furthermore, it is observed that the second law efficiency is mainly governed by the inlet air flow rate. The present study is proposed to be useful for selecting the tower inlet parameters to improve exergy performance of mechanical cooling towers.
机译:本工作建立了一种经过改进的,经过实验验证的分析,以预测涉及木质飞溅填料的机械通风冷却塔的性能和与火用相关的参数。与早期的研究不同,该研究将最多三个塔入口参数用于火用分析,而本研究同时考虑了所有五个入口参数对塔的火用性能的影响。为了同时预测出口空气和水的状况,将涉及干球和湿球温度离散功能的优化算法与从涉及Bosnjakovic相关性的控制区内的质量和能量守恒派生的数学模型结合使用。从实际的角度来看,选择了五个入口参数,例如干球温度,相对湿度,水温,水和空气流速,以进行火用分析。此后,在各种重要的与火用有关的因素上,分析了所有入口参数对塔性能的影响。定量分析表明,进气湿度,进水温度和进水质量流量显着影响空气和水的火用变化。本研究还表明,在五个入口参数中,水温,空气湿度和空气质量流量是造成火用破坏的主要原因。此外,观察到第二定律效率主要由进气流量控制。提出本研究对于选择塔入口参数以改善机械冷却塔的火用性能是有用的。

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