首页> 外文会议>2011 Second International Conference on Mechanic Automation and Control Engineering >Study the relationship between the flow-ratio of air and solution (FRAS) and the dehumidify capability and optimize the FRAS in the solar dehumidification system
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Study the relationship between the flow-ratio of air and solution (FRAS) and the dehumidify capability and optimize the FRAS in the solar dehumidification system

机译:研究空气和溶液的流量比(FRAS)与除湿能力之间的关系,并优化太阳能除湿系统中的FRAS

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The technology of liquid desiccant and solar regeneration, is the key technical problems of evaporative cooling in high temperature and humidity region. Through the experimental measurement, study the relationship between the flow-ratio of air and solution and the dehumidify capability in different operating point of calcium chloride (CaCl2) and chloride lithium (LiCl) mixture liquids. Also analyze the effect of the heat capacity ratio ( m* ) and total thermal efficiency according the total thermal efficiency count formula. The conclusion is that not the more air flow, the better dehumidification efficiency, when the solution mass flow is consent. The flow-ratio of air and solution need be optimized. The dehumidification efficiency of mixture salt solution in the solar dehumidification system was improved from percentage of 32.5 to 51.7, according to the optimal the flow-ratio of air and solution. This research for improving the dehumidification efficiency of mixture salt solution in the solar dehumidification system provides the theory evidence.
机译:液体干燥剂和太阳能再生技术是高温高湿地区蒸发冷却的关键技术问题。通过实验测量,研究了氯化钙(CaCl 2 )和氯化锂(LiCl)混合液在不同工作点下空气和溶液的流量比与除湿能力之间的关系。还应根据总热效率计数公式分析热容比(m *)和总热效率的影响。结论是,当溶液质量流量一致时,空气流量不是越大,除湿效率就越好。空气和溶液的流量比需要优化。根据最佳的空气和溶液的流量比,太阳能除湿系统中混合盐溶液的除湿效率从32.5%提高到51.7。该研究为提高太阳能除湿系统中混合盐溶液的除湿效率提供了理论依据。

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