平板太阳能集风辅助干燥剂除湿系统的性能评价

Wasif Iqbal, M. Mahmood, A. Waqas, Majid Ali, Naveed Ahmed, Muhammad Haroon Iqbal
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摘要

最近,能源需求有了相当大的增长,而这种增加的能源需求主要是通过燃烧化石燃料来满足的。可再生能源形式可以为能源部门长期存在的问题提供解决方案。最有前途的可再生能源形式是太阳能和太阳能空气集热器是一种有效的技术,利用丰富的太阳能用于加热目的,降低电能和化石燃料的消耗。本研究将平板太阳能空气收集器与干燥剂除湿系统集成,以再生干燥剂材料。通过在33 m3/h、51 m3/h和62 m3/h范围内不同的工艺空气流量来评估所提出的fpsac辅助旋转干燥剂系统在出口温度、除湿效率(DE)、除湿能力(MRC)和显能比(SER)方面的性能。实验结果表明,进口工艺风量为33 m3/h时,除湿后的DE值最大(0.71),空气温度上升百分比最大(68.42%)。此外,最高的MRC和SER值为12.69 kg/h,最高的工艺空气进口流量为62 m3/h时为1.26。简而言之,本研究提供了FPSAC为连续干燥剂除湿提供再生空气的潜力信息。
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Performance Evaluation of the Flat Plate Solar Air Collector Assisted Desiccant Dehumidification System
Recently, a considerable growth in energy demand has been observed and predominantly this increased demand in energy is met by the burning of fossil fuels. Renewable forms of energy can offer solutions to issues that have persisted for a long time in the energy sector. Most promising form of renewable energy is solar energy and solar air collectors are an effective technique of utilizing abundant solar energy for heating purposes and lowering the consumption of electrical energy and fossil fuels. This study integrated a flat plate solar air collector with desiccant dehumidification system to regenerate desiccant material. The performance of the proposed FPSAC-assisted rotary desiccant system in terms of outlet temperature, dehumidification effectiveness (DE), moisture removal capacity (MRC) and sensible energy ratio (SER) was evaluated by varying flow rates of process air in the range 33 m3/h, 51 m3/h, and 62 m3/h. The experimental results indicate that an inlet process air flow rate of 33 m3/h provides the maximum DE (0.71) and the maximum percentage increase in air temperature (68.42%) after dehumidification. Furthermore, highest MRC and SER values were found to be to 12.69 kg/h and 1.26 for the highest process air inlet flow rate i.e., 62 m3/h. In short, this study provides information on the potential of a FPSAC to provide regeneration air for continuous desiccant dehumidification.
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