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Effectiveness of a Solar Absorption Cooling System in a Low Carbon Building

机译:低碳建筑中太阳能吸收式制冷系统的有效性

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Evaluation of a typical integrated solar absorption cooling system has been carried out to determine its overall performance. Analysis of the results revealed an operational efficiency of 61% for the solar collectors at a mean differential temperature (ΔT) of 51 °C as compared with the manufacturer's rating of 70 % at a AT of 60 °C. The absorption chiller did however perform quite satisfactorily and achieved a COP of 0.69 as compared with the manufacturer's rating of 0.7 despite the slight deviation at the collectors end. The installation strategy for the hot water storage tanks also appears to have achieved its objective of maintaining controlled temperature stratification in the tanks. It could therefore be concluded that the system has proved its potential as a viable cooling technology for application in buildings. However, in order to maintain the appropriate hot water supply temperature during low solar radiation levels, supplementary heat source such as gas or biomass fired system would have to be considered and incorporated into solar absorption cooling systems
机译:已对典型的集成式太阳能吸收式冷却系统进行了评估,以确定其总体性能。结果分析表明,在51°C的平均温差(ΔT)下,太阳能集热器的工作效率为61%,而在60°C的AT下,制造商的额定效率为70%。尽管在收集器端稍有偏差,但吸收式冷却器的性能确实令人满意,与制造商的额定值0.7相比,它的COP为0.69。热水储罐的安装策略似乎也已达到其目的,即保持储罐中的温度分层。因此可以得出结论,该系统已经证明了其作为可行的冷却技术在建筑中的应用潜力。但是,为了在低太阳辐射水平下维持适当的热水供应温度,必须考虑使用诸如燃气或生物质燃烧系统之类的辅助热源,并将其合并到太阳能吸收冷却系统中

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