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Heat Transfer Enhancement of the Air-Cooling Tower with Rotating Wind Deflectors under Crosswind Conditions

机译:在交叉风条件下,带旋转风偏转器的空气冷却塔的传热增强

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摘要

To investigate the effect of wind deflectors on air flow and heat transfer performance of an air-cooling tower under crosswind conditions, an experimental system based on a surface condenser aluminum exchanger-type indirect air-cooling tower is established at a 1:100 proportional reduction. A 3-D computational fluid dynamics simulation model is built to study the air flow and temperature fields. The air flow rate into the cooling tower and the heat transfer rate of the radiators are used to evaluate cooling performance. Rotating wind deflectors are adopted to reduce the influence of crosswind on the cooling tower performance. The effects of the rotating wind deflectors on the thermal-hydraulic characteristics of the air-cooling tower under different environmental crosswind speeds are studied. Results indicate that the wind direction in the tower reverses as the rotating speed of the wind deflectors increases. The thermal performance of an air-cooling tower under crosswind conditions can be improved by using rotating wind deflectors. The heat transfer rate of a cooling tower with eight wind deflectors begins to increase when the rotating speed exceeds 2 r/min.
机译:为了探讨风偏转器对交叉风条件下的空气冷却塔空气流动和传热性能的影响,基于表面冷凝器铝交换器型间接空气冷却塔的实验系统在1:100比例减少。建立了三维计算流体动力学仿真模型,以研究空气流量和温度。进入冷却塔的空气流速和散热器的传热速率用于评估冷却性能。采用旋转风偏转器来减少交叉风对冷却塔性能的影响。研究了旋转风偏转器对不同环境横向速度下的空冷塔的热液压特性的影响。结果表明,塔中的风向反转,随着风偏转器的旋转速度增加而变化。通过使用旋转风偏转器可以改善在交叉风条件下的空气冷却塔的热性能。当旋转速度超过2 r / min时,带有8个风偏转器的冷却塔的传热速率开始增加。

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