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EXPERIMENT BASED PERFORMANCE ANALYSIS OF A SOLAR ABSORPTION COOLING AND HEATING SYSTEM IN CARNEGIE MELLON UNIVERSITY

机译:基于实验的Carnegie Mellon大学太阳能吸收冷却和加热系统的性能分析

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The center for building performance and diagnostic (CBPD) at Carnegie Mellon University has successfully designed, installed and tested a solar cooling and heating system to assess the feasibility of solar cooling for small scale commercial buildings or residential buildings with aspects of technology and energy efficiency. This solar cooling and heating system is primarily comprised of parabolic trough solar collectors, PTSC's and a 16 kW dual energy source double effect (2E) absorption chiller. The 2E absorption chiller driven by PTSCs was tested to produce chilled water or hot water throughout a number of clear days in summer and winter. The analyses of the experimental data defined the system performance: the efficiency of the solar collector, the capacity and COP of the chiller, and the heat transfer coefficient of the heat recovery exchanger, by using a statistical approach, based on the energy balance equation. In the solar cooling tests during July 2007 in Pittsburgh, PA, the average efficiency of PTSCs was 35% when they were operated at about 155°C for driving the 2E absorption chiller and the chiller was able to provide 8 to 14 kW cooling with COP in the range 1.0 to 1.2; the overall system efficiency is in the range 0.35 to 0.41. In the near future, this solar absorption cooling and heating test system and its operation will be integrated with the cooling, heating and ventilation units for long term utilization.
机译:Carnegie Mellon University的建筑工程和诊断中心(CBPD)成功设计,安装和测试了太阳能冷却和加热系统,以评估小规模商业建筑或住宅建筑的太阳能冷却的可行性,以及技术和能源效率方面。这种太阳能冷却和加热系统主要由抛物线槽太阳能收集器,PTSC和16 kW双能源双效(2E)吸收冷却器组成。通过PTSCS驱动的2E吸收冷却器被测试,在夏季和冬季的晴天中经过多次晴天生产冷水或热水。基于能量平衡方程,通过使用统计方法,实验数据的分析定义了系统性能:太阳能收集器,冷却器的效率,冷却器的容量和COP和热回收交换器的传热系数。在2007年7月在匹兹堡的太阳冷却试验中,当在大约155℃下操作时,PTSC的平均效率为35%,以驱动2E吸收冷却器,冷却器能够通过COP提供8至14 kW冷却。在1.0至1.2的范围内;整体系统效率范围为0.35至0.41。在不久的将来,这种太阳能吸收冷却和加热测试系统及其操作将与冷却,加热和通风装置集成,以便长期利用。

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