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Flexibilization of steam power plants as partners for renewable energy systems

机译:蒸汽发电厂作为可再生能源系统合作伙伴的灵活性

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Increasing the flexibility of conventional power plants is one key challenge for the massive integration of highly volatile renewable energy resources into the German and European power system. Flexible power plants ensure the security of supply by compensating fluctuations in the electrical grid caused by intermittent renewable energy production from wind and sun. In this paper, the future development of the German electricity market is predicted and evaluated in terms of the future flexibility demand of coal-fired power plants based on simulation studies for four distinct years. As the flexibility measures for coal-fired power plants generally use inherent capabilities of the existing power plant systems, they are usually restricted by limiting factors. Here, the limiting factors for reducing the minimum load and increasing load change rates are discussed and potential measures to mitigate their influence are presented. An alternative way to increase the flexibility lies in properly integrating thermal energy storages. This integration is presented and evaluated using a dynamic power plant model in EBSILON®Professional. Simulations show that by integrating this storage concept the electrical minimum load can be reduced while simultaneously increasing the load change rate.
机译:对于将高度易挥发的可再生能源大规模整合到德国和欧洲的电力系统中,提高常规电厂的灵活性是一项关键挑战。灵活的发电厂通过补偿因风和日照产生的间歇性可再生能源产生的电网波动来确保供电安全。本文基于对燃煤电厂未来灵活性的需求,基于对四个不同年份的模拟研究,对德国电力市场的未来发展进行了预测和评估。由于燃煤电厂的灵活性措施通常利用现有电厂系统的固有功能,因此通常会受到限制因素的限制。在此,讨论了减少最小负荷和增加负荷变化率的限制因素,并提出了减轻其影响的潜在措施。增加灵活性的另一种方法是正确集成热能存储装置。使用EBSILON®Professional中的动态电厂模型来展示和评估这种集成。仿真表明,通过集成此存储概念,可以减少电气最小负载,同时提高负载变化率。

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