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ENERGY STORAGE FOR DESICCANT COOLING SYSTEMS COMPONENT DEVELOPMENT

机译:干燥冷却系统组件开发的能量存储

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摘要

Liquid desiccant cooling systems are especially suitable for solar energy applications. The liquid desiccants can be regenerated at temperatures below 80℃ and the concentrated and diluted desiccants can easily be stored to provide a high energy storage capacity for air dehumidification and cooling. Special absorption processes are necessary to achieve an optimal air dehumidification and simultaneously a high energy storage capacity. The dominating effects on the absorption process are discussed in detail. For efficient dehumidification the temperature of the absorption process and the inlet concentration of the salt solution are of major importance. For a high energy storage capacity a high air to solution mass ratio is required to achieve great differences between salt inlet and outlet concentrations. A high mass ratio corresponds to a small desiccant flow. New dehumidifiers have been developed and tested, to achieve an efficient air dehumidification and high, storage capacity. They dehumidify air by a very small flow of a hygroscopic aqueous salt solution, e.g. LiCl-H_2O in an internally cooled absorption process. Experimental results of air dehumidification and storage capacities are reported. Mass transfer coefficients, used in numerical models, have been identified by absorption experiments and enable the reliable sizing of dehumidifiers.
机译:液体干燥剂冷却系统特别适合于太阳能应用。液态干燥剂可以在80℃以下的温度下再生,浓缩干燥剂和稀释干燥剂可以容易地存储,从而为空气除湿和冷却提供了高能量存储能力。需要特殊的吸收过程以实现最佳的空气除湿并同时实现高能量存储能力。详细讨论了对吸收过程的主要影响。为了有效地进行除湿,吸收过程的温度和盐溶液的入口浓度至关重要。对于高能量存储容量,需要高的空气与溶液质量比,以实现盐入口和出口浓度之间的巨大差异。质量比高对应于干燥剂流量小。新的除湿机已经开发和测试,以实现有效的空气除湿和高存储容量。它们通过极少量的吸湿性盐水溶液(例如水)对空气除湿。内部冷却吸收过程中的LiCl-H_2O。报告了空气除湿和储存能力的实验结果。数值模型中使用的传质系数已通过吸收实验确定,并能够可靠地确定除湿机的尺寸。

著录项

  • 来源
    《Solar Energy》 |1998年第6期|p.209-221|共13页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 太阳能技术;
  • 关键词

  • 入库时间 2022-08-18 00:58:57

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