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Optimization of a Novel Solar Heat Pipe Heat Recovery Fan

机译:新型太阳能热管余热风机的优化

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摘要

A novel heat pipe recovery fan has been proposed in order to improve the indoor environment,which can be either a perfect supplement to the traditional desiccant technology or an alternative.Heat pipe can be applied to recycle heat and enhance solution dehumidification.This paper presents a new technological process that the heat can be derived from waste water and solar energy can be reserved to use when necessary.By applying the correlated coefficient,the performance of the system is presented in terms of dehumidification capacity and heat recovery efficiency by simulation.The effect of supplying air flow rate on the airborne pollutant transports are also illustrated based on the new fan with the indoor heat source.The results demonstrate that the best indoor rate for the present system is limited to 0.3ms-1.In addition,the liquid to gas flow rate ratios (L/G) has a great influence on dehumidification effectiveness and heat recovery effectiveness.The conclusion can be used as reference information for the optimization of new fan design and application.
机译:为了改善室内环境,人们提出了一种新型的热管回收风机,该风机既可以作为传统干燥剂技术的完美补充,也可以作为替代方案。热管可以用于循环热能并提高溶液的除湿能力。可以保留利用废水中的热量和太阳能的新工艺。在应用相关系数的基础上,通过模拟,从除湿能力和热回收效率方面介绍了系统的性能。并以带有室内热源的新型风机为例,说明了送风量对空气中污染物传播的影响。结果表明,本系统的最佳室内风量被限制在0.3ms-1以内。气体流量比(L / G)对除湿效率和热回收效率有很大影响。结论可作为参考有关优化新风扇设计和应用的信息。

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