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Numerical simulation of flow and heat transfer characteristics in Solar Enhanced Natural Draft Dry Cooling Tower

机译:太阳能强化自然通风干式冷却塔流动和传热特性的数值模拟

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A Solar Enhanced Natural Draft Dry Cooling Tower (SENDDCT) is a Natural Draft Dry Cooling Tower that uses solar energy to enhance the cooling performance and lower the operating cost for a power plant. In this paper, a three-dimensional numerical stimulation is developed by using FLUENT to investigate the effects of the following operating parameters on the thermal performance of the SENDDCT: the collector diameter, ambient temperature and the types of heat exchanger layout. The numerical simulation results reveal that the heat transfer rate is proportional to collector diameter, but is inversely proportional to the ambient temperature. Specifically, decreasing the ambient temperature from 305.15 K to 283.15 K has result in an increase of almost 104.2 MW in heat transfer rate. For a fixed heat exchanger area, the heat rejection of the SENDDCT decreases with an increasing coverage ratio for a given "unit coverage ratio" defined in this paper. It is found that stronger vortices are generated at the back of heat exchangers due to the introduction of the blockage units. Using smaller heat exchanger and blockage units can weaken vortices and enhance cooling performance. (C) 2015 Elsevier Ltd. All rights reserved.
机译:太阳能自然风干式冷却塔(SENDDCT)是一种自然风干式冷却塔,它利用太阳能来提高冷却性能并降低电厂的运行成本。在本文中,使用FLUENT开发了三维数值模拟,以研究以下操作参数对SENDDCT的热性能的影响:集热器直径,环境温度和热交换器布局的类型。数值模拟结果表明,传热速率与集热器直径成正比,与环境温度成反比。具体而言,将环境温度从305.15 K降低到283.15 K,导致传热速率提高了近104.2 MW。对于固定的热交换器区域,对于本文中定义的给定“单位覆盖率”,SENDDCT的散热随覆盖率的增加而降低。发现由于引入了阻塞单元,在热交换器的后部产生了更强的涡流。使用较小的热交换器和阻塞装置可以减弱涡旋并增强冷却性能。 (C)2015 Elsevier Ltd.保留所有权利。

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