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Performance Comparison of Organic Rankine Cycle and Vapour Compression Cycle Hybrid Cooling-Heating System using Subcritical or Supercritical Working Fluid

机译:亚临界或超临界工作流体的有机朗肯循环和蒸汽压缩循环混合制冷系统的性能比较

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This paper presents a mathematical modelling on the evaluation of cooling, heating and power performance of a hybrid system of Organic Rankine Cycle and Vapour Compression Cycle. The system is assumed to be powered through solar parabolic trough collector and is able to generate a cooling power of 10 kW. Refrigerants R134a or R245fa are chosen as the working fluid of the system. The system is constructed using commercial energy modelling tool AspenPlus. Analysis is performed to determine the effect of changing the mass flow rate split ratio on the energy output. The effect of using subcritical and supercritical working fluid is also compared. Particular attention is paid toward the condition where the power output is equivalent to the energy consumption in view of creating a self-powered cooling and heating system. The result shows that the coefficient of performance for system using R245fa is higher compared to that using R134a. However, the system using R134a allows a self-powered cooling and heating system to be achieved to be achieve at a much higher mass split ratio, resulting the system to be 35% more efficient in the performance.
机译:本文提出了一种数学模型,用于评估有机朗肯循环和蒸汽压缩循环混合系统的冷却,加热和功率性能。假定该系统通过太阳能抛物槽收集器供电,并且能够产生10 kW的冷却功率。选择制冷剂R134a或R245fa作为系统的工作流体。该系统使用商业能源建模工具AspenPlus构建。进行分析以确定改变质量流量分配比对能量输出的影响。还比较了使用亚临界和超临界工作流体的效果。考虑到创建自供电的冷却和加热系统,应特别注意功率输出等于能耗的情况。结果表明,与使用R134a相比,使用R245fa的系统的性能系数更高。但是,使用R134a的系统允许以更高的质量分配比实现自供电的冷却和加热系统,从而使系统的性能提高35%。

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