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Experimental study of plate type air cooler performances under four operating modes

机译:四种运行模式下板式空气冷却器性能的实验研究

摘要

To reduce the chiller energy consumption in a central air-conditioning system, a heat exchanger, acting as an air cooler, can be installed before an air handling unit to pre-cool the fresh air by recovering cooling capacity from exhaust air. However, studies on evaluating the performances of air cooler under condensation condition are limited. Therefore, an experimental study was conducted to evaluate the plate type air cooler performance under four operating modes (dry/wet mode, low/high air humidity). Under dry operating mode, the air cooler serves as a traditional air cooler; while under wet operating mode, it works as an indirect evaporative cooler (IEC). The cooler dynamic performances during different operating mode transition were investigated. The steady performances under different parameter influence were also comparatively studied. The results show that wet operating improves the sensible and latent cooling capacities of air cooler significantly. Condensation takes place under high humidity inlet air, results in decreasing of sensible efficiency but increasing of latent efficiency and total heat transfer rate. The coefficient of performance (COP) of IEC is higher than that of traditional air cooler under the same testing configuration. The highest COP can reach 9.0 and achieved under wet operating mode with condensation.
机译:为了减少中央空调系统中的冷却器能耗,可以在空气处理单元之前安装一个用作空气冷却器的热交换器,以通过从排气中回收冷却能力来预冷新鲜空气。然而,在冷凝条件下评估空气冷却器性能的研究有限。因此,进行了一项实验研究,以评估四种运行模式(干/湿模式,低/高空气湿度)下的板式空气冷却器性能。在干运转模式下,空气冷却器用作传统的空气冷却器。在湿运行模式下,它可以用作间接蒸发冷却器(IEC)。研究了不同运行模式过渡期间的冷却器动态性能。还对不同参数影响下的稳态性能进行了比较研究。结果表明,湿运行显着提高了空气冷却器的显着和潜在的冷却能力。冷凝在高湿度进气下发生,导致显着效率降低,但潜在效率和总传热速率增加。在相同的测试配置下,IEC的性能系数(COP)高于传统的空气冷却器。最高COP可以达到9.0,并且在湿运行模式下冷凝时可以达到。

著录项

  • 作者

    Chen Y; Yang H; Luo Y;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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