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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Swiss pumped hydro storage potential for Germany's electricity system under high penetration of intermittent renewable energy
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Swiss pumped hydro storage potential for Germany's electricity system under high penetration of intermittent renewable energy

机译:间歇性可再生能源的高普及率下,瑞士抽水蓄能为德国的电力系统提供电力

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In order to cut greenhouse-gas emissions and increase energy security, the European Commission stimulates the deployment of intermittent renewable energy sources (IRES) towards 2050. In an electricity system with high shares of IRES implemented in the network, energy balancing like storage is needed to secure grid stability and smooth demand satisfaction. Pumped hydro storage (PHS) is at this moment the best option for large scale storage. Switzerland has strong ambitions to further develop their PHS sector and become the battery of Europe. In this research, the potential of the Swiss PSH plants is explored, whilst taking inflow into the upper reservoirs of the PHS plants into consideration. To simulate electricity imbalance, Germany is used as a case study. Germany already has a high penetration of IRES and has plans to increase installed IRES capacity. By using an energy planning model (PowerPlan), three future scenarios of the German electricity system were designed, each with a different set of IRES installed (solar, mixed and wind). Results show that the Swiss battery ambition offers most benefits to a wind-oriented scenario, reducing both shortages as well as surpluses. Water inflow in Swiss PHS-reservoirs is of minor importance when looking at security of supply, although it was shown that the solar-scenario profits more from inflow in terms of system stability. However, a potential conflict was observed in the solar-scenario between the need for electricity storage and the storage of natural inflow, resulting in more surpluses in the system when inflow was taken into account.
机译:为了减少温室气体排放并提高能源安全性,欧盟委员会鼓励在2050年之前部署间歇性可再生能源(IRES)。在电网中实现大量IRES的电力系统中,需要像存储一样进行能量平衡确保电网稳定性和平滑需求满足。目前,抽水蓄能(PHS)是大规模储存的最佳选择。瑞士雄心勃勃,希望进一步发展其PHS部门,并成为欧洲的后盾。在这项研究中,探索了瑞士PSH装置的潜力,同时考虑了流入PHS装置上部水库的流量。为了模拟电力不平衡,以德国为例。德国已经具有很高的IRES渗透率,并计划增加已安装的IRES容量。通过使用能源计划模型(PowerPlan),设计了德国电力系统的三种未来方案,每种方案都安装了一套不同的IRES(太阳能,混合和风能)。结果表明,瑞士的电池野心为风向计划提供了最大的好处,既减少了短缺,也减少了剩余。从供应的安全性来看,瑞士小灵通水库的水流入次要重要性,尽管从系统稳定性的角度来看,太阳能情景从流入中获利更多。但是,在太阳能情景中,在蓄电需求和自然流入的蓄积之间观察到了潜在的冲突,因此当考虑到流入量时,系统中会有更多的盈余。

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