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Exergy assessment and exergy cost analysis of a renewable-based and hybrid trigeneration scheme for domestic water and energy supply

机译:基于可再生能源的混合式三联发电家庭水和能源供应的火用评估和火用成本分析

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Exergy and exergy cost analyses are proposed as complementary methods for the assessment and better understanding of the efficiency of a hybrid trigeneration system based on renewable energy sources. The system combines photovoltaic/thermal collectors, an evacuated tube collector and a wind turbine and produces electricity, sanitary hot water and desalted fresh water for a single family house. The system includes two desalination technologies (reverse osmosis and membrane distillation) that consume power and heat respectively, and two kinds of energy storage devices (a hot water tank and two lead-acid batteries).The assessment is based on simulations developed by using TRNSYS software. As a first level of detail, exergy analysis is applied in ten-minute basis to selected plant components. As a second level of detail, it is proposed to apply exergy-based indicators that summarize the system behavior during a longer period of time (monthly basis). By using aggregated values, exergy accumulation terms become negligible, what allows applying symbolic thermoeconomics to calculate exergy cost and to analyze in depth the process of cost formation. The system has an exergy efficiency of 7.76% (6.68 due to electricity, 0.33 due to fresh water and 0.75 due to sanitary hot water). (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了火用和火用成本分析作为评估和更好地了解基于可再生能源的混合三代发电系统效率的补充方法。该系统结合了光伏/集热器,真空管集热器和风力涡轮机,可为单户住宅生产电力,卫生热水和淡化淡水。该系统包括两种分别消耗功率和热量的脱盐技术(反渗透和膜蒸馏),以及两种储能装置(一个热水箱和两个铅酸电池)。评估基于使用TRNSYS开发的模拟软件。作为第一级详细信息,火用分析以十分钟为基础应用于选定的植物成分。作为第二详细级别,建议应用基于火用的指标,该指标汇总较长时间段(每月)中的系统行为。通过使用合计值,火用累积项可以忽略不计,这允许应用符号热经济学来计算火用成本并深入分析成本形成的过程。该系统的火用效率为7.76%(用电为6.68,淡水为0.33,卫生热水为0.75)。 (C)2018 Elsevier Ltd.保留所有权利。

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