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The study of gas-liquid flow dynamics in the inclined-corrugated elements of cooling tower filler unit

机译:冷却塔加注装置倾斜波纹元件中气液流动动力学的研究

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This paper deals with the studies of cooling tower, operated with the contactless evaporative cooling technology. The authors developed the cooling tower with a three-flow liquid cooling system. The authors conducted the numerical studies of gas-liquid flow dynamics in the inclined-corrugated elements of checker filling unit that allows to give us an idea of two-phase flow structure, its movement throughout the checker filling, as well as to assess the influence of mode parameters on the efficiency of collecting the liquid drops and the range of stable operation of device. The most effective operation of this device is at the pressure drop of 100 Pa, while developing the average air flow rate in the element up to 3.2 m/s.
机译:本文涉及采用非接触式蒸发冷却技术运行的冷却塔的研究。作者开发了具有三流式液体冷却系统的冷却塔。作者对方格填充单元倾斜波纹元件中的气液流动动力学进行了数值研究,这使我们能够了解两相流结构,其在方格填充过程中的运动以及评估影响。模式参数对液滴收集效率和装置稳定运行范围的影响该设备最有效的操作是在100 Pa的压降下,同时将元件中的平均空气流速提高到3.2 m / s。

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