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Large-scale integration of offshore wind into the Japanese power grid

机译:海上风进入日本电网的大规模集成

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Offshore wind power attracts intensive attention for decarbonizing power supply in Japan, because Japan has 1600 GW of offshore wind potential in contrast with 300 GW of onshore wind. Offshore wind availability in Japan, however, is significantly constrained by seacoast geography where very deep ocean is close to its coastal line, and eventually, nearly 80% of offshore wind resource is found in an ocean depth deeper than 50 m. Therefore, power system planning should consider both the location of available offshore wind resource and the constraint of power grid integration. This paper analyzes the impact of power grid integration of renewable resources including offshore wind power by considering the detailed location of offshore wind resource and the detailed topology of power grid. The study is performed by an optimal power generation mix model, highlighted by detailed spatial resolution derived from 383 nodes and 472 bulk power transmission lines with hourly temporal resolution through a year. The model identifies the optimal integration of power generation from variable renewables, including offshore wind, given those predetermined capacities. The results imply that, together with extensive solar PV integration, total 33 GW of offshore wind, composed of 20 GW of fixed foundation offshore wind and 13 GW of floating offshore wind could contribute to achieve 50% of renewable penetration in the power supply of Japan, and that scale of offshore wind integration provides a technically feasible picture of large-scale renewable integration in the Japanese power sector.
机译:海上风电吸引了深入关注日本的脱碳电源,因为日本拥有1600 GW的海上风电位,与300 GW的陆上风相比。然而,日本的海上风可用性受到海岸地理的严重限制,非常深海靠近其沿海线,最终,近80%的海洋风资源在海洋深度比50米深度深度深处地区。因此,电力系统规划应考虑可用海上风力资源的位置和电网集成的约束。本文通过考虑海上风力资源的详细位置和电网详细拓扑,分析了可再生资源电网集成的影响,包括海上风力。该研究由最佳发电混合模型进行,通过从383个节点和472个散装电力传输线路得出的详细空间分辨率突出显示,每小时时间分辨率一年。该模型识别来自可变可再生能源的发电的最佳集成,包括海上风,给定这些预定容量。结果意味着,与广泛的太阳能光伏集成,总共33 GW的海上风,由20 GW的固定基金海上风组成,13 GW浮动海上风可能有助于达到日本电力供应中可再生渗透率的50%而且,海上风集成的规模提供了在日本电力领域的大规模可再生集成的技术上可行的景象。

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