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Allocation of economic costs in trigeneration systems at variable load conditions including renewable energy sources and thermal energy storage

机译:在可变负荷条件下的三代发电系统中的经济成本分配,包括可再生能源和热能存储

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As energy systems become more and more complex, the issue of the appropriate way to allocate the cost of the resources consumed increases because the way in which allocation is made directly affects the prices of the products obtained and, thus, the consumers' behavior. Thermoeconomics has been used to explain the cost formation process in complex energy systems. The thermoeconomic analysis of a trigeneration system including renewable energy sources (RES) and thermal energy storage (TES) was developed to determine the energy, capital, and total unit costs of the internal flows and final products. This work addresses issues not yet deeply studied in thermoeconomics, namely the joint production of energy services in dynamic energy systems and the incorporation of TES, RES (photovoltaic panels) and a component with different products for each operation mode (heat pump producing heat in heating mode and cooling in cooling mode). The interconnection between charging and discharging periods through the TES units was explored, allowing the discharged flow to be traced back to its production period. The trigeneration system resulted more profitable than the reference system, with total cost savings of 9942 e/yr, which was translated into the lower annual total unit costs of the final products. (C) 2018 Elsevier Ltd. All rights reserved.
机译:随着能源系统变得越来越复杂,分配消耗的资源成本的适当方法的问题增加了,因为进行分配的方法直接影响所获得产品的价格,从而影响消费者的行为。热经济学已被用来解释复杂能源系统中的成本形成过程。对包括可再生能源(RES)和热能存储(TES)在内的三联发电系统的热经济学分析进行了研究,以确定内部流动和最终产品的能源,资本和总单位成本。这项工作解决了在热经济学中尚未深入研究的问题,即在动态能源系统中联合生产能源服务,以及将TES,RES(光伏面板)和具有不同产品的组件结合到每种操作模式中(热泵在加热中产生热量)模式和冷却模式下的冷却)。探索了通过TES装置进行充电和放电期间之间的相互联系,从而使排放的流量可以追溯到其生产时期。与参考系统相比,三代发电系统带来了更多的利润,节省了9942 e / yr的总成本,这转化为最终产品的较低年度总单位成本。 (C)2018 Elsevier Ltd.保留所有权利。

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