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Study of a Clean Microgrid for the Japanese Antarctica Showa Base

机译:日本南极昭和基地清洁微电网的研究

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The Antarctica Showa Base has been powered primarily by diesel power generation. However, heavy oil fossil fuel is used for power generation by diesel generators. The Showa base is located in Antarctica, so there is heat demand throughout the year. Therefore, the capacity of transportation of fuel and emissions of carbon dioxide has become an issue. For these reasons, the construction of clean energy systems using renewable energy in order to locally produce energy for local consumption is being planned. In this study, we will design a microgrid based on the introduction of renewable energy (photovoltaics generation and wind power generators) and solid oxide fuel cell (SOFC), which does not emit carbon dioxide during power generation and can use heat cascades. However, there is a risk of a power failure because the power quality decreases with the introduction of renewable energy. In this paper, we clarified the introduction rate of renewable energy with the lowest frequency fluctuation and clarified the introduction limit of renewable energy in summer and winter.
机译:南极昭和基地主要由柴油发电提供动力。但是,柴油发电机将重油矿物燃料用于发电。昭和基地位于南极洲,因此全年都有热量需求。因此,燃料的运输能力和二氧化碳的排放已经成为问题。由于这些原因,正在计划使用可再生能源建设清洁能源系统,以便本地生产供当地消费的能源。在这项研究中,我们将基于可再生能源(光伏发电和风力发电机)和固体氧化物燃料电池(SOFC)的引入设计微电网,该固体氧化物燃料电池在发电过程中不会排放二氧化碳并且可以使用热级联。但是,由于引入可再生能源会导致电能质量下降,因此存在停电的风险。在本文中,我们阐明了频率波动最低的可再生能源的引入率,并阐明了夏季和冬季可再生能源的引入极限。

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