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Energy and exergy efficiencies enhancement analysis of integrated photovoltaic-based energy systems

机译:基于光伏的集成能源系统的能效和火用效率增强分析

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Integrated energy systems (IESs) take advantage of the complementarily of their subsystems to improve the overall system functionality, sustainability and performance. Presently, the cost of the recovery of thermodynamic losses from photovoltaic modules has not been addressed. In this study, novel energy and exergy efficiencies enhancement analysis (EEEEA) is proposed for the study of the implications of recovering the conversion and usage losses from a photovoltaic (PV) module. Four evolutionary IES were analysed: a PV-Battery (System 1); a Photovoltaic-thermal (PV/T)-Battery (System 2); a PV-Battery-Electrolyser-Fuel cell (System 3) and a PV/T-Battery-Electrolyser-Fuel cell (System 4). Actual solar radiation and temperature data coupled with synthesised data were applied. Results show that both the energy and exergy efficiencies of System 2 upgraded by 27.89% and 5.42%, respectively, over System 1. The energy and exergy efficiencies of System 3 degraded by 3.11% and 4.10%, respectively, over System 1; whereas the energy and exergy efficiencies of System 4 degraded by 21.92% and 7.72%, respectively, over System 2. Furthermore, the thermodynamic efficiencies of the IESs did not naturally upgrade with system complexity. The EEEEA can help scientists, engineers and policymakers to analyse IESs with a parent-offspring relationship in order to establish the optimum efficiency and thermo-economics.
机译:集成能源系统(IES)充分利用其子系统的优势来改善整体系统功能,可持续性和性能。目前,尚未解决从光伏模块中恢复热力学损失的成本。在这项研究中,提出了新颖的能源和火用效率增强分析(EEEEA),用于研究从光伏(PV)模块中恢复转换和使用损耗的意义。分析了四种进化型IES:PV电池(系统1);光伏热(PV / T)电池(系统2); PV-电池-电解池-燃料电池(系统3)和PV / T-电池-电解池-燃料电池(系统4)。应用实际的太阳辐射和温度数据以及合成数据。结果表明,系统2的能源效率和火用效率分别比系统1提升了27.89%和5.42%。系统3的能源效率和火用效率分别比系统1下降了3.11%和4.10%。相对于系统2,系统4的能效和火用效率分别降低了21.92%和7.72%。此外,IES的热力学效率并未随系统的复杂性自然提高。 EEEEA可以帮助科学家,工程师和政策制定者分析具有父子关系的IES,以建立最佳效率和热经济性。

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