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A key review on exergetic analysis and assessment of renewable energy resources for a sustainable future

机译:关于可再生能源资源的高能分析和评估以实现可持续未来的关键评论

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Energy resources and their utilization intimately relate to sustainable development. In attaining sustainable development, increasing the energy efficiencies of processes utilizing sustainable energy resources plays an important role. The utilization of renewable energy offers a wide range of exceptional benefits. There is also a link between exergy and sustainable development. A sustainable energy system may be regarded as a cost-efficient, reliable, and environmentally friendly energy system that effectively utilizes local resources and networks. Exergy analysis has been widely used in the design, simulation and performance evaluation of energy systems. The present study comprehensively reviews exergetic analysis and performance evaluation of a wide range of renewable energy resources (RERs) for the first time to the best of the author's knowledge. In this regard, general relations (i.e., energy, exergy, entropy and exergy balance equations along with exergy efficiency, exergetic improvement potential rate and some thermo-dynamic parameters, such as fuel depletion ratio, relative irreversibility, productivity lack and exergetic factor) used in the analysis are presented first. Next, exergetically analyzed and evaluated RERs include (a) solar energy systems; (a1) solar collector applications such as solar water heating systems, solar space heating and cooling, solar refrigeration, solar cookers, industrial process heat, solar desalination systems and solar thermal power plants), (a2) photovoltaics (PVs) and (a3) hybrid (PV/thermal) solar collectors, (b) wind energy systems, (c) geothermal energy systems, (c1) direct utilization (district heating, geothermal or ground-source heat pumps, greenhouses and drying) and (c2) indirect utilization (geothermal power plants), (d) biomass, (e) other renewable energy systems, and (f) country based RERs. Studies conducted on these RERs are then compared with the previously ones in tabulated forms, while the Grassmann (or exergy flow) diagrams, which are a very useful representation of exergy flows and losses, for some RERs are given. Finally, the conclusions are presented. It is expected that this comprehensive study will be very beneficial to everyone involved or interested in the exergetic design, simulation, analysis and performance assessment of RERs.
机译:能源及其利用与可持续发展息息相关。在实现可持续发展中,提高利用可持续能源的过程的能源效率起着重要作用。利用可再生能源可带来广泛的特殊利益。火用和可持续发展之间也有联系。可持续能源系统可以被视为一种有效利用本地资源和网络的经济高效,可靠且环保的能源系统。火用分析已广泛用于能源系统的设计,仿真和性能评估。本研究首次以作者的知识为依据,全面回顾了各种可再生能源(RER)的能量分析和性能评估。在这方面,使用了一般关系(即能量,火用,熵和火用平衡方程式以及火用效率,火用改进潜力率和一些热力学参数,例如燃料消耗率,相对不可逆性,生产率不足和火用因子)在分析中首先介绍。其次,对RER进行充分的分析和评估,包括:(a)太阳能系统; (a1)太阳能收集器应用,例如太阳能热水系统,太阳能空间供热和制冷,太阳能制冷,太阳能炊具,工业过程供热,太阳能淡化系统和太阳能热电厂),(a2)光伏(PVs)和(a3)混合(PV /热)太阳能集热器,(b)风能系统,(c)地热能系统,(c1)直接利用(区域供热,地热或地源热泵,温室和干燥)和(c2)间接利用(地热发电厂),(d)生物质,(e)其他可再生能源系统,以及(f)基于国家的RER。然后将这些RER进行的研究以表格形式与以前的RER进行比较,同时给出了一些RER的Grassmann(或“火用”流量)图,它是火用流量和损失的非常有用的表示。最后,提出了结论。预期这项全面的研究将对参与RER的积极设计,模拟,分析和性能评估的所有人或感兴趣的人非常有益。

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