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Solar Assisted, Pre-cooled Hybrid Desiccant Cooling System For Pakistan

机译:巴基斯坦太阳能辅助预冷混合干燥剂冷却系统

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This work presents results of experimental and simulation study of a solar assisted pre-cooled hybrid desiccant cooling (PHDCS) system for air conditioning applications in Pakistan. Tests were conducted on a gas fired pre-cooled hybrid desiccant cooling test rig for high humidity Karachi weather. Using measured data sets from the test rig, validation of TRYNSIS model of the same cooling system was undertaken. Four modes or configurations of the cooling system were simulated for Karachi and Lahore climatic conditions. Lahore simulation results demonstrated that better COP_p can be achieved using indirect evaporative cooler for pre-cooling and direct evaporative cooler for post-cooling of air. Life cycle assessment of solar air collector was performed and energy and environmental payback periods were found to be equal to 1 and 1.5 years, respectively. An economic assessment of the solar collector revealed a payback period of about 14 years.
机译:这项工作介绍了用于巴基斯坦空调应用的太阳能辅助预冷混合干燥剂冷却(PHDCS)系统的实验和仿真研究结果。在高湿度卡拉奇天气的燃气预冷混合干燥剂冷却试验台上进行了测试。使用来自测试设备的测量数据集,对同一冷却系统的TRYNSIS模型进行了验证。针对卡拉奇和拉合尔气候条件模拟了冷却系统的四种模式或配置。拉合尔模拟结果表明,使用间接蒸发冷却器进行预冷和使用直接蒸发冷却器进行空气后冷,可以实现更好的COP_p。进行了太阳能集热器的生命周期评估,发现能量回收期和环境回收期分别等于1年和1.5年。对太阳能收集器的经济评估显示,投资回收期约为14年。

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