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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Optimization of an SOFC-based decentralized polygeneration system for providing energy services in an office-building in Tokyo
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Optimization of an SOFC-based decentralized polygeneration system for providing energy services in an office-building in Tokyo

机译:优化基于SOFC的分散式多联产系统,以在东京的办公楼中提供能源服务

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摘要

Decentralized energy systems are thought to have great potential for supplying electricity, cooling and heating demands of buildings. A decentralized system combining a solid oxide fuel cell (SOFC) with two absorption-chillers and a heat-exchanger is proposed. In order to minimize the CO2-emissions and to compute the associated costs, a two-level optimization is performed. On the first level the design parameters of the system are optimized using an evolutionary algorithm, and on the second level the optimal daily operation of the system is optimized using a linear programming algorithm. The results are compared with the CO2-emissions and costs of a typical conventional system that obtains the base electricity requirements as well as electricity for an electric chiller/heater system from the central power grid. The fully decentralized SOFC-based energy system could result in a potential CO2 reduction of 45% at an estimated cost increase of about 290% compared to the conventional system. (c) 2005 Elsevier Ltd. All rights reserved.
机译:人们认为,分散式能源系统在满足建筑物的电力,制冷和供暖需求方面具有巨大潜力。提出了一种将固体氧化物燃料电池(SOFC)与两个吸收式冷却器和一个热交换器结合在一起的分散系统。为了最大程度地减少CO2排放并计算相关成本,请执行两级优化。在第一层,使用进化算法优化系统的设计参数,在第二层,使用线性规划算法优化系统的最佳日常运行。将结果与典型常规系统的CO2排放量和成本进行比较,该常规系统获得基本电力需求以及从中央电网获得的电制冷机/加热器系统的电力。与传统系统相比,完全分散的基于SOFC的能源系统可导致潜在的CO2减少45%,估计成本增加约290%。 (c)2005 Elsevier Ltd.保留所有权利。

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