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A study on multi-nozzle arrangement for spray cooling system in natural draft dry cooling tower

机译:自然通风干式冷却塔喷雾冷却系统的多喷嘴布置研究

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摘要

Natural draft dry cooling tower (NDDCT) technology is especially attractive to power plants built in arid regions with limited water resource. However, high ambient temperature in summer deteriorates the performance of built NDDCT. To address this problem, evaporative pre-cooling technology has been developed by using nozzles to disintegrate water into fine droplets to achieve quick evaporation. The pre-cooled air flowing through radiator, has an enhanced heat exchange with the hot working fluid in the tube side. This paper reports a spray cooling system for the experimental tower built in UQ by combining several nozzle LNN1.5 to cool the inlet air and consequently improve the cooling efficiency of the NDDCT. To minimize water usage, a careful arrangement of spray nozzles should be investigated to achieve the maximum cooling outcome. With five nozzles installment, the inlet air is cooled by 6.3 °C, corresponding to 51.2% cooling efficiency. A dimensionless analysis is presented to correlate cooling efficiency with influencing factors. The advantage of this pre-cooling system lies in the efficient water usage: more than 96% of the injected water extracts substantial heat from hot air and evaporates into vapor, leading to a pre-cooled airflow.
机译:自然通风的干式冷却塔(NDDCT)技术特别适合在水资源有限的干旱地区建造的发电厂。但是,夏季高的环境温度会降低NDDCT的性能。为了解决这个问题,已经通过使用喷嘴将水分解成细小液滴以实现快速蒸发而开发了蒸发式预冷技术。流过散热器的预冷空气与管侧的热工作流体进行了增强的热交换。本文报告了通过结合几个喷嘴LNN1.5来冷却UQ建造的实验塔的喷雾冷却系统,从而冷却了进气,从而提高了NDDCT的冷却效率。为了最大程度地减少用水量,应仔细研究喷嘴的布置,以实现最大的冷却效果。通过安装五个喷嘴,进气被冷却到6.3°C,相当于51.2%的冷却效率。提出了无量纲分析以将冷却效率与影响因素相关联。这种预冷却系统的优势在于高效的用水:超过96%的注入水从热空气中提取大量热量并蒸发成蒸气,从而产生了预冷却的气流。

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