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A pre-cooling Munters environmental control desiccant cooling cycle in combination with chilled-ceiling panels

机译:预先冷却的Munters环境控制干燥剂冷却循环与冷冻天花板组合

摘要

Desiccant cooling is efficient in latent cooling, whereas chilled-ceiling is efficient for sensible cooling. In this paper, a new desiccant cooling system, a pre-cooling Munters environmental control (PMEC) cycle is proposed, which combines with chilled-ceiling panels. The mathematical model of the system is provided and used to predict the system performance under South-east China weather conditions using hour-by-hour calculations. The results indicate that chilled-ceiling combined with desiccant cooling could save up to 40% of primary energy consumption, in comparison with a conventional constant volume all-air system. More interestingly, more than 99% of annual operating hours for desiccant regeneration could be accomplished by low-grade heat of less than 80°C with the new cycle, while 30% annual operating hours need heat higher than 80°C with the old MEC cycle.
机译:干燥剂冷却对于潜在的冷却是有效的,而冷藏天花板对于显着的冷却是有效的。本文提出了一种新的干燥剂冷却系统,即预冷的芒特斯环境控制(PMEC)循环,该系统结合了冷冻天花板。提供了系统的数学模型,并使用每小时的计算来预测中国东南地区天气条件下的系统性能。结果表明,与常规的恒定容积全空气系统相比,冷气天花板与干燥剂冷却相结合可节省多达40%的一次能源消耗。更有趣的是,在新的循环中,通过低于80°C的低品位热量可以实现每年超过99%的干燥剂再生年运行时间,而在旧的MEC中,有30%的年度运行时间需要高于80°C的热量。周期。

著录项

  • 作者

    Zhang LZ; Niu JL;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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