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Energy efficiency and economic feasibility of an absorption air-conditioning system using wet, dry and hybrid heat rejection methods

机译:使用湿,干燥和杂种热排斥方法的吸收空调系统的能量效率和经济可行性

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摘要

In tropical and sub-tropical regions, air-conditioning systems account for the greatest electricity consumption and high water use. Solar-driven absorption cooling systems can conveniently reduce electricity consumption at need. The performance of this cooling system depends on the system’s heat rejection. A simulation was performed for a 15 kW single effect ammonia-water absorption cooling system driven by low temperature thermal energy and with three different heat rejection methods (wet cooling, dry cooling, and hybrid cooling). This hybrid cooling system uses wet cooling on the absorber and dry cooling on the condenser. The system performance and economics of the chiller with these cooling methods were evaluated. The analysis showed that a wet cooling system has a higher system performance and water consumption compared to a dry cooling system, which has a high primary energy consumption with no water usage. In hot weather conditions and where there is scarcity of water, hybrid cooling can consume on average 41% less electrical energy than dry cooling and 49% less water than wet cooling and the payback period compared to a wet cooling system can be less than three years.
机译:在热带和亚热带地区,空调系统占最大的电力消耗和高水平。太阳能驱动的吸收冷却系统可以方便地减少需要的电力消耗。该冷却系统的性能取决于系统的热排斥。对由低温热能驱动的15 kW单效氨 - 吸水冷却系统进行模拟,并用三种不同的散热方法(湿冷,干燥冷却和混合冷却)。该混合式冷却系统使用湿冷冷却吸收器和冷凝器上的干燥冷却。评估了冷却器的系统性能和经济性,具有这些冷却方法。分析表明,与干燥冷却系统相比,湿冷冷却系统具有更高的系统性能和耗水量,其具有高初级能量消耗,没有水。在炎热的天气条件下以及水的稀缺性时,杂种冷却可能比干燥的冷却平均消耗41%,而不是湿冷冷却比湿冷冷却相比减少49%,可以不到三年。

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