首页> 外文会议>European Photovoltaic Solar Energy Conference and Exhibition >NORTH-EAST ASIAN SUPER GRID FOR 100 RENEWABLE ENERGY POWER SUPPLY: DISTRIBUTED SMALL-SCALE AND CENTRALIZED LARGE-SCALE SOLAR PV AS A MAJOR ENERGY SOURCE
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NORTH-EAST ASIAN SUPER GRID FOR 100 RENEWABLE ENERGY POWER SUPPLY: DISTRIBUTED SMALL-SCALE AND CENTRALIZED LARGE-SCALE SOLAR PV AS A MAJOR ENERGY SOURCE

机译:东北亚超级电网,可提供100%可再生能源:作为主要能源的分布式小规模和集中大型太阳能光伏发电

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A need for the development of a renewable energy (RE) based system has emerged from the fast rise of electricity demand and increasing ecological problems provoked by human activities, including a fossil fuel based energy sector. Availability of various types of RE resources in North-East Asian regions including solar, wind, hydro, biomass and geothermal energy resources enables the very promising vision of building a Super Grid connecting different regions' energy resources to achieve synergistic effects and make a 100% RE supply possible. The regions are composed of Japan, China, North and South Korea, Mongolia, East Siberia and Far Eastern federal districts of Russia. The energy mix of energy supply consists of distributed small-scale rooftop PV and centralized large scale solar PV, solar thermal electricity generation (CSP), wind onshore, hydropower, geothermal energy, bioenergy, and four different energy storage technologies. For every sub-region a cost-optimal mix of energy technologies and storage options is defined, optimal capacities are computed for regions interconnected by high-voltage direct current (HVDC) power lines, system cost and levelized cost of electricity (LCOE) for each sub-region are computed, and total system LCOE of 58 - 77 €/MWh, depending on scenario assumptions, can be obtained. Integration of energy sectors leads to improved total system LCOE. The results clearly show that a 100% RE-based system is lower in cost than nuclear and fossil carbon capture and storage (CCS) alternatives. Solar PV is a core component for energy supply and reducing the total system costs.
机译:由于电力需求的快速增长以及人类活动(包括基于化石燃料的能源部门)引发的生态问题日益严重,对开发基于可再生能源(RE)的系统的需求日益凸显。东北亚地区各种类型的可再生能源的可利用性,包括太阳能,风能,水能,生物质能和地热能资源,使人们有希望建立一个超级电网,将各个地区的能源资源连接起来,以实现协同效应,并实现100%的可再生能源。可提供RE。该地区由日本,中国,北朝鲜和韩国,蒙古,东西伯利亚和俄罗斯的远东联邦地区组成。能源供应的能源结构包括分布式小规模屋顶光伏发电和集中式大规模太阳能光伏发电,太阳能热发电(CSP),陆上风力发电,水力发电,地热能,生物能和四种不同的储能技术。为每个子区域定义了能源技术和存储选项的成本最佳组合,针对通过高压直流(HVDC)电力线互连的区域,系统成本和每度电成本(LCOE),计算了最佳容量计算出次区域,根据情景假设,总系统LCOE为58-77€/ MWh。能源部门的整合导致整体系统LCOE的改善。结果清楚地表明,基于100%可再生能源的系统的成本要低于替代核能和化石碳捕获与储存(CCS)的成本。太阳能光伏发电是能源供应和降低系统总成本的核心组件。

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