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Optimal allocation and capacity of energy storage systems in a future European power system with 100 renewable energy generation

机译:未来欧洲电力系统中储能系统的最佳分配与能力,100%可再生能源

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The future European energy supply system will have a high share of renewable energy sources (RES) to meet the greenhouse gas emission policy of the European Commission. Such a system is characterized by the need for a strongly interconnected energy transport grid as well as a high demand of energy storage capacities to compensate the time fluctuating characteristic of most RE generation technologies. With the RE generators at the location of high harvest potential, the appropriate dimension of storage and transmission system between different regions, a cost efficient system can be achieved. To find the preferred target system, the optimization tool GENESYS (Genetic Optimization of a European Energy System) was developed. The example calculations under the assumption of 100% self-supply, show a need of about 2,500 GW RES in total, a storage capacity of about 240,000 GWh, corresponding to 6% of the annual energy demand, and a HVDC transmission grid of 375,000 GWkm. The combined cost for generation, storage and transmission excluding distribution, was estimated to be 6.87 ct/kWh.
机译:未来的欧洲能源系统将具有高度可再生能源(RES),以满足欧盟委员会的温室气体排放政策。这种系统的特征在于需要强烈互连的能量传输电网以及能量存储容量的高要求,以补偿大多数重新生成技术的时间波动特性。通过在高收获电位的位置处的RE发电机,可以实现不同地区之间的存储和传输系统的适当尺寸,可以实现成本效率的系统。为了找到优选的目标系统,开发了优化工具基因(欧洲能源系统的遗传优化)。假设100%自助供应的示例计算,表现出约2,500 GW RES的总,存储容量约为240,000 GWH,对应于年度能源需求的6%,以及375,000 GWKM的HVDC传输网格。 。不包括分布的生成,存储和传输的组合成本估计为6.87 CT / kWh。

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