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Suitable operational strategy for power interchange operation using multiple residential SOFC (solid oxide fuel cell) cogeneration systems

机译:使用多个住宅SOFC(固体氧化物燃料电池)热电联产系统进行电力交换操作的合适操作策略

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摘要

A suitable operational strategy for a power interchange operation using multiple residential solid oxide fuel cell (SOFC) cogeneration systems for saving energy is investigated by an optimization approach based on mixed-integer linear programming. In this power interchange operation, electricity generated by residential SOFC cogeneration systems is shared among households in a housing complex without allowing a reverse power flow to a commercial electric power system in order to increase electric load factors of the system. For an SOFC cogeneration system operated continuously with the minimum output, two types of operational strategies for the power interchange operation are adopted: an operation to meet the total demand for electricity in intended households by the electricity output of SOFC cogeneration systems and an operation to meet the demand for hot water in each household by the hot water output of the SOFC cogeneration system. To clarify a theoretical limit of the energy-saving effects of the two strategies, this study numerically analyzes optimal operation patterns for 20 households on three representative days. The results show that the former operational strategy, which takes advantage of the high electricity generating efficiency of the SOFC, is more suitable for saving energy as compared to the latter strategy.
机译:通过基于混合整数线性规划的优化方法,研究了使用多个住宅固体氧化物燃料电池(SOFC)热电联产系统进行电力交换操作以节省能源的合适操作策略。在该电力交换操作中,由住宅SOFC热电联产系统产生的电力在住宅综合体中的家庭之间共享,而不允许反向电力流向商业电力系统,以增加系统的电力负荷率。对于以最小输出量连续运行的SOFC热电联产系统,采用两种类型的电力交换运行操作策略:通过SOFC热电联产系统的电力输出来满足预期家庭的总电力需求的运行和满足以下要求的运行: SOFC热电联产系统的热水输出量使每个家庭对热水的需求增加。为了阐明这两种策略的节能效果的理论极限,本研究对三个代表日的20户家庭的最佳运营模式进行了数值分析。结果表明,与后一种策略相比,利用SOFC的高发电效率的前一种操作策略更适合于节能。

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