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Determination of Volumetric Heat and Mass Transfer Coefficients in Filling Unit of Evaporative Cooling Tower

机译:蒸发冷却塔填充单元中体积热量和传质系数的测定

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Currently, a pressing issue is a research and development of cooling technological equipment with considering water management, including efficient and energy-saving technologies with water-protecting schemes. The authors have proposed a new design of a cooling tower for circulating water with a developed filling unit, consisting of inclined-corrugated contact elements. The design of the filling unit and the operation principle of the cooling tower were described. The paper represents an analysis of the volumetric heat and mass transfer coefficients of inclined-corrugated contact elements in comparison with analogs widely used in the industry. A criteria relationship was obtained, allowing for an engineering assessment of the efficiency of the filling unit. The dependences of the volumetric heat and mass transfer coefficients on the average air velocity at the various wetting densities have been plotted. The high cooling capacity of the inclined-corrugated contact elements due to the uniform distribution of gas-liquid flows in the cross-section of the cooling tower has been proven.
机译:目前,一个紧迫的问题是考虑水管理的冷却技术设备的研究和开发,包括带防水方案的高效节能技术。作者提出了一种用于用开发的填充单元循环水的冷却塔的新设计,由倾斜波纹接触元件组成。描述了填充单元的设计和冷却塔的操作原理。该纸张表示与行业广泛应用的类似物相比,倾斜波纹接触元件的体积热量和传质系数的分析。获得标准关系,允许对填充单元的效率进行工程评估。已经绘制了体积热量和传质系数对各种润湿密度的平均空气速度的依赖性。已经证明了由于冷却塔的横截面的横截面均匀分布引起的倾斜波纹接触元件的高冷却能力。

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