首页> 外文期刊>Energies >Performance Study of a Novel Solar Solid Dehumidification/Regeneration Bed for Use in Buildings Air Conditioning Systems
【24h】

Performance Study of a Novel Solar Solid Dehumidification/Regeneration Bed for Use in Buildings Air Conditioning Systems

机译:用于建筑物空调系统的新型太阳能固体除湿/再生床的性能研究

获取原文
           

摘要

In this paper, a novel solar solid dehumidification/regeneration bed has been proposed, and its three regeneration methods, i.e., simulated solar radiation regeneration, microwave regeneration, and combined regeneration of the microwave and simulated solar radiation, were experimentally investigated and compared, as well as the dehumidification performance. The degree of regeneration of the proposed system under the regeneration method combining both microwave irradiation and simulated solar radiation could reach 77.7%, which was 3.77 times higher than that of the system under the simulated solar regeneration method and 1.05 times higher than that of the system under the microwave regeneration. The maximum energy efficiency of the proposed system under the combined regeneration method was 21.7%, while it was only 19.4% for the system under microwave regeneration. All these proved that the combined regeneration method of the simulated solar and microwave radiation not only improved the regeneration efficiency of the system, but also enhanced the energy efficiency. For the dehumidification performance, the maximum transient moisture removal was 14.1 g/kg, the maximum dehumidification efficiency was 68.0% and the maximum speed of dehumidification was 0.294 g/(kg·s) when the inlet air temperature was at 26.09 °C and the air relative humidity was at 89.23%. By comparing the testing results with the semi-empirical results from the Page model, it was indicated that the Page model can predict the regeneration characteristics of the novel solar solid dehumidification/regeneration bed under the combined method of microwave and simulated solar regeneration. The results of this research should prove useful to researchers and engineers to exploit the potential of solar technologies in buildings worldwide.
机译:本文提出了一种新型的太阳能固体除湿/再生床,并通过实验研究和比较了其三种再生方法,即模拟太阳辐射再生,微波再生以及微波与模拟太阳辐射的联合再生。以及除湿性能。结合微波辐射和模拟太阳辐射的再生方法,所提出系统的再生度可达到77.7%,比模拟太阳再生方法的系统高3.77倍,比系统高1.05倍。在微波下再生。组合再生方法下,拟议系统的最大能量效率为21.7%,而微波再生下,系统的最大能量效率仅为19.4%。所有这些证明了模拟太阳和微波辐射的组合再生方法不仅提高了系统的再生效率,而且提高了能源效率。就除湿性能而言,当入口空气温度为26.09°C时,最大瞬时除湿量为14.1 g / kg,最大除湿效率为68.0%,最大除湿速度为0.294 g /(kg·s)。空气相对湿度为89.23%。通过将测试结果与Page模型的半经验结果进行比较,表明Page模型可以预测微波和模拟太阳再生相结合的新型太阳能固体除湿/再生床的再生特性。这项研究的结果应被证明对研究人员和工程师有用,以开发全球建筑物中太阳能技术的潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号