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Optimum design of a solar ejector refrigeration system for various operating scenarios

机译:针对各种操作场景的太阳能喷射器制冷系统的优化设计

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摘要

The objective of this work is to examine a solar ejector refrigeration system under various operating scenarios. Evacuated tube collectors of 100 m(2) collecting area coupled to a storage tank of 4 m(3) are selected for feeding the generator of the refrigerator. The system is examined for different evaporator temperatures from -10 degrees C to 10 degrees C and for different heat rejection temperatures from 30 degrees C to 50 degrees C. In every case, the system is optimized by selecting the optimum ejector design and the optimum generator temperature. Different refrigerants are examined as R123, R245fa, R600a and R134a, while the emphasis is given to the R141b. The innovation of this work is based on the systematic examination and optimization of a great range of operating scenarios giving a clear image for the system performance. According to the final results, the R141b is found to be the best candidate in all the operating scenarios. More specifically, the maximum system COP is found to be 0.234 when the system produces refrigeration at 10 degrees C and rejects heat to the environment at 30 degrees C. The optimum generator temperatures are found to be from 114 degrees C to 157 degrees C and the cooling capacity is ranged from 1.85 kW up to 23.39 kW. The analysis is performed with a developed model in EES (Engineering Equation Solver) under steadystate conditions.
机译:这项工作的目的是研究各种操作情况下的太阳能喷射器制冷系统。抽空的集管面积为100 m(2)的集管器与4 m(3)的储罐相连,用于为冰箱的发电机供电。检查系统在-10摄氏度到10摄氏度之间的不同蒸发器温度以及从30摄氏度到50摄氏度不同的散热温度。在每种情况下,都通过选择最佳的喷射器设计和最佳的发生器来优化系统温度。检查了不同的制冷剂,如R123,R245fa,R600a和R134a,同时重点介绍了R141b。这项工作的创新基于对各种操作场景的系统检查和优化,从而为系统性能提供了清晰的图像。根据最终结果,发现R141b是所有操作场景中的最佳选择。更具体地说,当系统在10摄氏度下产生制冷并在30摄氏度下向环境排放热量时,最大系统COP为0.234。发现最佳发电机温度为114摄氏度至157摄氏度,并且制冷能力从1.85 kW到23.39 kW。在稳态条件下,使用EES(工程方程求解器)中的已开发模型进行分析。

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