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Comparative performance study on liquid desiccant dehumidification with different packing types for built environment

机译:不同包装类型液体干燥剂对建筑环境的比较绩效研究

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摘要

Packed liquid desiccant dehumidification systems are regarded as energy-saving and environmentally friendly technologies compared with conventional dehumidification technologies. The packing type plays a significant role in the system performance, but comparative studies of the different types are limited. First, this article investigates the dehumidification performance of liquid desiccant dehumidification with three packing types: corrugated structured, S-shaped polyvinyl chloride, and globular-shaped polypropylene. Then, the operation performance of solar-assisted liquid desiccant air-conditioning systems with different packings is simulated. A commercial building in Hong Kong was chosen as the case study. Results show that each specific packing surface area and structure determines the dehumidification performance by significantly influencing the liquid/air contact area and time. The enthalpy and moisture effectiveness of the corrugated structured packing were found to be 1.69 and 1.60times those of S-shaped polyvinyl chloride packing, and 1.97 and 1.87times those of globular-shaped polypropylene packing. The main reason is that the corrugated structured packing has a denser structure with a smaller volume of individual modules, which could provide a large specific surface area, but the dehumidification performance did not increase proportionally with the specific surface area. When the specific surface area increased from 81.8 to 537.3m(2)/m(3), the enthalpy and moisture effectiveness increased from 0.35 to 0.6 and from 0.38 to 0.61, respectively. Furthermore, the simulation results showed that for the commercial building, the maximum electricity savings percentage for globular-shaped polypropylene packing liquid desiccant air-conditioning systems, S-shaped polyvinyl chloride packing liquid desiccant air-conditioning systems, and corrugated structured packing liquid desiccant air-conditioning systems was 11, 21, and 42%, respectively. For globular-shaped polypropylene packing liquid desiccant air-conditioning systems, a minimum solar collector area of 219m(2) was required to avoid consuming more electricity. The authors also found that the dehumidification performance could be enhanced with an increase of desiccant/air mass flow rate ratio and inlet air temperature. This article will help researchers and engineers optimize the design of liquid desiccant air-conditioning systems with different packing types.
机译:与传统的除湿技术相比,包装液体干燥剂除湿系统被认为是节能和环保技术。包装类型在系统性能中发挥着重要作用,但对不同类型的比较研究有限。首先,本文研究了用三种填充型液体干燥剂除湿的除湿性能:波纹结构,S形聚氯乙烯和球状聚丙烯。然后,模拟具有不同填充的太阳能辅助液体干燥剂空调系统的操作性能。选择在香港的商业建筑被选为案例研究。结果表明,每个特定的填充表面区域和结构通过显着影响液体/空气接触面积和时间来确定除湿性能。发现波纹结构包装的焓和水分效果是1.69和1.60倍的S形聚氯乙烯包装,1.97和1.87倍的球状聚丙烯包装。主要原因是波纹结构包装具有更密集结构,具有较小的单个模块,其可以提供大的比表面积,但除湿性能不会与特定表面积比例地增加。当比表面积从81.8增加到537.3米(2)/ m(3)时,焓和水分效应分别从0.35增加到0.6〜0.6%和0.61。此外,仿真结果表明,对于商业建筑,球形聚丙烯包装液干燥剂空调系统,S形聚氯乙烯包装液干燥剂空调系统的最大电力节省百分比和波纹结构填料液体干燥剂空气 - 监管系统分别为11,21和42%。对于球状聚丙烯包装液干燥剂空调系统,需要最小的太阳能集电极面积219米(2)以避免消耗更多的电力。作者还发现,随着干燥剂/空气质量流量比和入口空气温度的增加,可以提高除湿性能。本文将帮助研究人员和工程师优化具有不同包装类型的液体干燥空调系统的设计。

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    Hong Kong Polytech Univ Dept Bldg Serv Engn Room ZN 850 Block Z 181 Chatham Rd South Hong Kong 999077 Hong Kong Peoples R China;

    Hong Kong Polytech Univ Dept Bldg Serv Engn Room ZN 850 Block Z 181 Chatham Rd South Hong Kong 999077 Hong Kong Peoples R China;

    Hong Kong Polytech Univ Dept Bldg Serv Engn Room ZN 850 Block Z 181 Chatham Rd South Hong Kong 999077 Hong Kong Peoples R China;

    Hong Kong Polytech Univ Dept Bldg Serv Engn Room ZN 850 Block Z 181 Chatham Rd South Hong Kong 999077 Hong Kong Peoples R China;

    Hong Kong Polytech Univ Dept Bldg Serv Engn Room ZN 850 Block Z 181 Chatham Rd South Hong Kong 999077 Hong Kong Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑基础科学;
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