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Exergo-economic assessment and sensitivity analysis of a solar-driven combined cooling, heating and power system with organic Rankine cycle and absorption heat pump

机译:具有有机朗肯循环和吸收热泵太阳能驱动的混合冷却,加热和电力系统的exergo - 经济评估和敏感性分析

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摘要

District energy systems based on renewable resources help to reduce greenhouse-gas emissions and fossil-fuel use. Here, a multi-generation energy system combining cooling, heating, and power is realized by employing organic Rankine cycle (ORC) and absorption heat pump (AHP) technologies, which enable cascading the utilization of solar heat. The AHP can operate steadily providing cooling, heating and hot water from solar thermal and geothermal sources. A modelling approach presented to evaluate the energy, exergy, economic, and exergo-economic performance of the above system. The results show that the AHP could reach a coefficient of performance (COP) between 1.38 and 2.37 depending on the mode of operation. The yearly energy and exergy efficiency of the tri-generation system is 56.5% and 9.6%, respectively. Compared to a separate system, the simple economic payback time of the tri-generation system is 3.5 years. The specific exergo-economic cost of electricity produced is 0.12 $/kWh, whereas the cost of hot water is much higher, or 0.31 $/kWh. The sensitivity analysis performed shows that the inlet and outlet temperatures of the AHP together with the yearly solar irradiance have the highest impact on the performance. This study provides a new direction on cost-effective utilization of renewable sources in district energy systems.(c) 2021 Elsevier Ltd. All rights reserved.
机译:基于可再生资源的地区能源系统有助于减少温室气体排放和化石燃料使用。这里,通过采用有机朗肯循环(ORC)和吸收热泵(AHP)技术来实现结合冷却,加热和功率的多代能量系统,使得级联利用太阳能热量。 AHP可以稳定地提供来自太阳能热和地热源的冷却,加热和热水。提出了一种建模方法,以评估上述系统的能源,高渠,经济和经济效果。结果表明,根据操作模式,AHP可以达到1.38和2.37之间的性能系数(COP)。三代系统的年能和高级效率分别为56.5%和9.6%。与单独的系统相比,三代系统的简单经济投资回收时间为3.5年。所产生的特定的Exergo经济成本为0.12美元/千瓦时,而热水的成本要高得多,或0.31美元/千瓦时。所执行的灵敏度分析表明,AHP的入口和出口温度与年度太阳辐照度相同对性能的影响最高。本研究提供了关于区能源系统可再生能源的成本利用的新方向。(c)2021 Elsevier Ltd.保留所有权利。

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