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Evaluation of heat rejection strategies for liquid desiccant air-conditioning systems.

机译:液体干燥剂空调系统的散热策略评估。

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摘要

The increased demand for space cooling and the resulting summer peak in electrical demands are motivating research into thermally-driven air-conditioning systems that can use renewable or waste heat. One promising technology is the use of a Liquid Desiccant Air-Conditioning (LDAC).;An evaporative cooling tower (ECT) was used as a cooling device to reject the heat from a LDAC at Queen's University. Investigation of the ECT showed significant power consumption and ineffective operation in humid conditions which contributed to the low electrical and thermal coefficients of performance (COPE and COPT). Therefore, the present study was undertaken to identify and evaluate alternative heat rejection strategies that can provide a better thermal and electrical system performance.;The relationship between the relative humidity and the ambient air temperature at a variety of cooling water temperatures was modelled using TRNSYS, a transient simulation program, as the first stage of the study. To find the most promising heat rejection technologies, available cooling methods were reviewed and two were selected (based on the results of the first phase of the study), namely, (i) a cooling water storage (CWS) system and (ii) a ground-source heat exchanger (GSHX) system. These were simulated and evaluated in detail. Finally, an experimental investigation of a stratified cooling water storage tank (SCWS) and night cooling water storage (NCWS) was undertaken to confirm the results of an additional simulation on the use of a stratified cooling tank.;From the simulation results and the overall comparison of the selected heat rejection strategies of the LDAC, it was concluded that GSHX system with 25 boreholes showed better COPE than the CWS system whereas the COPT improvement of both systems was almost same. The improved performance of the GSHX however, is expensive as the capital cost for boreholes is higher than the other systems. When comparing the CWS system (with mixed tank) and the SCWS (with stratified tank) it was observed that the stratified tank had the better potential of improving the COPT, depending upon the water flow rate and initial tank temperature.
机译:对空间制冷需求的增加以及随之而来的夏季用电高峰正促使人们对可使用可再生或废热的热驱动空调系统进行研究。一种有前途的技术是使用液体干燥剂空调(LDAC)。蒸发冷却塔(ECT)被用作冷却设备以排出女王大学LDAC的热量。对ECT的研究表明,在潮湿条件下,功率消耗很大,操作效率很低,这导致较低的电气和热性能系数(COPE和COPT)。因此,本研究旨在识别和评估可以提供更好的热和电气系统性能的替代散热策略。;使用TRNSYS对相对湿度与环境温度在各种冷却水温度之间的关系进行建模,过渡仿真程序,作为研究的第一阶段。为了找到最有前途的散热技术,回顾了可用的冷却方法,并选择了两种(基于研究的第一阶段的结果),即(i)冷却水存储(CWS)系统和(ii)地源热交换器(GSHX)系统。对它们进行了模拟和详细评估。最后,对分层冷却水储罐(SCWS)和夜间冷却水储罐(NCWS)进行了实验研究,以确认对分层冷却储罐的使用进行额外模拟的结果。通过比较LDAC的选定散热策略,可以得出结论,具有25个钻孔的GSHX系统显示出比CWS系统更好的COPE,而两个系统的COPT改善几乎相同。然而,由于钻孔的资金成本高于其他系统,因此GSHX的性能提高十分昂贵。在比较CWS系统(带混合水箱)和SCWS(带分层水箱)时,发现分层水箱具有改善COPT的更好潜力,具体取决于水流​​量和初始水箱温度。

著录项

  • 作者

    Salimizad, Danial.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Mechanical engineering.
  • 学位 M.Appl.Sc.
  • 年度 2015
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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