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Residential solar air conditioning: Energy and Exergy analyses of an ammonia-water absorption cooling system

机译:住宅太阳能空调:氨水吸收式制冷系统的能量和火用分析

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摘要

Large scale heat-driven absorption cooling systems are available in the marketplace for industrial applications but the concept of a solar driven absorption chiller for air-conditioning applications is relatively new. Absorption chillers have a lower efficiency than compression refrigeration systems, when used for small scale applications and this restrains the absorption cooling system from air conditioning applications in residential buildings. The potential of a solar driven ammonia-water absorption chiller for residential air conditioning application is discussed and analyzed in this paper. A thermodynamic model has been developed based on a 10 kW air cooled ammonia-water absorption chiller driven by solar thermal energy. Both energy and exergy analyses have been conducted to evaluate the performance of this residential scale cooling system. The analyses uncovered that the absorber is where the most exergy loss occurs (63%) followed by the generator (13%) and the condenser (11%). Furthermore, the exergy loss of the condenser and absorber greatly increase with temperature, the generator less so, and the exergy loss in the evaporator is the least sensitive to increasing temperature.
机译:大型热驱动吸收式冷却系统在市场上可用于工业应用,但是用于空调应用的太阳能驱动吸收式冷却器的概念相对较新。当用于小规模应用时,吸收式制冷机的效率比压缩制冷系统低,这限制了吸收式制冷系统在住宅建筑中的空调应用。本文讨论并分析了太阳能驱动的氨水吸收式制冷机在住宅空调应用中的潜力。基于由太阳能驱动的10 kW空冷氨水吸收式冷水机,开发了一个热力学模型。已经进行了能量和火用分析,以评估这种住宅规模的制冷系统的性能。分析发现,吸收器是最大的火用损失发生地点(63%),其次是发电机(13%)和冷凝器(11%)。此外,冷凝器和吸收器的火用损耗随温度而大大增加,发电机的火用损耗则不那么大,而蒸发器中的火用损耗对温度升高的敏感性最小。

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