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Techno-economic analysis of a foil-based solar collector driven electricity and fresh water generation system

机译:基于箔的太阳能收集器驱动电力和淡水发生系统的技术经济分析

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For medium-scale dispatchable (on demand) power and fresh water generation, a concentrated solar energy powered system with thermal energy storage is an attractive option. However, currently used concentrated solar power technologies (parabolic trough collector, solar power tower, linear Fresnel reflector) use heavy and very expensive glass mirrors and receivers. Recently, a novel micro-structured polymer foil-based concentrating solar collector system, with the advantages of a low installation cost and a low operation and maintenance cost, has been proposed. This system, which generate heat by focusing sunlight like magnifying glasses, can be effectively used for applications with temperatures up to about 350 degrees C. Techno-economic analysis and optimization of a micro-structured polymer foil-based concentrating solar collector powered organic Rankine cycle based electricity and multi-effect distillation based fresh water generation system is presented in this paper. The proposed system has a lot of potential for the places with electricity and water crisis. The results indicate that cyclopentane is the most appropriate organic Rankine cycle working fluid for the plant, achieving a levelized cost of electricity of 0.116 (sic)/kWh(e) and levelized cost of fresh water of 1.13 (sic)/m(3) for Antofagasta, Chile and 0.163 (sic)/kWh(e) and 1.62 (sic)/m(3) for Cape Town, South Africa. (C) 2020 Elsevier Ltd. All rights reserved.
机译:对于中型调度(按需)电源和淡水,具有热能存储的集中太阳能动力系统是有吸引力的选择。然而,目前使用的集中的太阳能技术(抛物线槽收集器,太阳能电塔,线性菲涅耳反射器)使用沉重和非常昂贵的玻璃镜和接收器。最近,已经提出了一种新型微结构化聚合物箔的浓缩太阳能收集器系统,提出了低安装成本的优点和低运行和维护成本。该系统通过聚焦阳光像放大镜聚焦,可以有效地用于高达约350摄氏度的温度的应用。技术经济分析和优化微结构化聚合物箔的浓缩太阳能收集器供电有机朗肯循环本文介绍了基于电力和多效蒸馏的淡水发生系统。拟议的系统对电力和水危机的地方有很多潜力。结果表明,环戊烷是工厂最合适的有机朗肯循环工作流体,实现了0.116(SiC)/ kWh(e)的稳定电力成本和1.13(SiC)/ m(3)的淡水的调整成本对于南非开普敦,智利和0.163(SIC)/ KWH(e)和1.62(SIC)/ M(3)。 (c)2020 elestvier有限公司保留所有权利。

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