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NUMERICAL INVESTIGATION AND PERFORMANCE OPTIMIZATION OF AN AIR-COOLED STEAM CONDENSER CELL UNDER AMBIENT CONDITIONS

机译:环境条件下空气冷却蒸汽冷凝器电池的数值研究和性能优化

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Air-cooled steam condensers (ACSCs) are so sensitive to the unpredictable ambient conditions that it is quite necessary to find the mechanism how the ambient conditions get into reaction and reasonable measurements can be employed to improve the performance. The numerical model of an ACSC cell is established in the paper. The influence of the ambient conditions on the performance of the ACSC cell is investigated, and the final stable back pressure (absolute pressure) the ACSC cell operates at is forecasted. Finally, wind wall is equipped to change the flow field around the ACSC cell and the performance is optimized. Aerodynamic characteristic of the ACSC cell is simulated by employing the FAN boundary and porous media model in FLUENT. User Define Function (UDF) based on the actual steam property is loaded to simulate the condensation of the steam in the exchangers. The flow field around the ACSC cell varies with the different wind speeds and directions. As a result, the fan volumetric effectiveness and the exchanger performance both decrease under high wind speed and adverse wind direction. Wind temperature gets into reaction mainly because it changes the cold side temperature of the exchangers. Under high wind temperature, the reduced temperature difference decreases the heat transfer rate between the exhaust steam and the ambient air. The equipped wind wall successfully reduces the hot air recirculation (HAR) although the fan performance is also affected due to the gathering effect between the wind wall and heat exchangers, and the performance of the ACSC cell is significantly improved under the dual effects.
机译:风冷蒸汽冷凝器(ACSCS)对不可预测的环境条件如此敏感,即非常有必要找到机制如何采用环境条件进入反应和合理的测量来改善性能。在纸上建立了ACSC单元的数值模型。研究了环境条件对ACSC电池性能的影响,并预测了ACSC电池的最终稳定的背压(绝对压力)。最后,挡风壁配备以改变ACSC电池周围的流场,并且优化性能。通过在流利的风扇边界和多孔介质模型中模拟ACSC电池的空气动力学特征。使用基于实际蒸汽属性的用户定义功能(UDF)以模拟交换器中蒸汽的冷凝。 ACSC电池周围的流场随着不同的风速和方向而变化。结果,风扇体积效率和交换器性能在高风速和不良风向下减小。风温度主要是因为它改变了交换器的冷侧温度。在高风温下,降低的温差降低了排气蒸汽和环境空气之间的传热速率。装备的风壁成功减少了热空气再循环(Har),尽管风扇性能也受到由于挡风壁和热交换器之间的采集效果而受到影响,并且在双重效应下显着改善了ACSC电池的性能。

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