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Dynamic analysis of hybrid energy systems under flexible operation and variable renewable generation - Part I: Dynamic performance analysis

机译:柔性运行和可变可再生发电下混合能源系统的动力学分析-第一部分:动态性能分析

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Dynamic analysis of HES (hybrid energy systems) under flexible operation and variable renewable generation is considered in this two-part communication to better understand various challenges and opportunities associated with the high variability arising from integrating renewable energy into the power grid. Unique consequences are addressed by devising advanced HES solutions in which multiple forms of energy commodities, such as electricity and chemical products, may be exchanged. Dynamic models of various unit operations are developed and integrated within two different HES options. One HES option, termed traditional, produces electricity only and consists of a primary heat generator, a steam turbine generator, a wind farm, and a battery storage. The other HES option, termed advanced, includes not only the components present in the traditional option but also a chemical plant complex to repurpose excess energy for non-electricity services, such as for the production of chemical goods. In either case, a given HES is connected to the power grid at a point of common coupling and requested to deliver a certain electricity generation profile as dictated by a regional power grid operator based on a predicted demand curve. A dynamic performance analysis of these highly-coupled HES is conducted in this part one of the communication to identify their key dynamical properties and limitations and to prescribe solutions for best managing and mitigating the high variability introduced from incorporating renewable energy into the energy mix.
机译:在这一分为两部分的交流中,我们考虑了灵活运行和可变可再生发电下的HES(混合能源系统)的动态分析,以更好地理解与将可再生能源整合到电网中引起的高可变性相关的各种挑战和机遇。通过设计先进的HES解决方案可以解决独特的后果,在该解决方案中可以交换多种形式的能源商品,例如电力和化学产品。在两个不同的HES选项中开发并集成了各种单元操作的动态模型。一种HES选项(称为传统选项)仅发电,由一次热发生器,蒸汽轮机发电机,风电场和电池组组成。另一个称为高级的HES选项不仅包括传统选项中存在的组件,还包括化工厂综合体,用于将多余的能源重新用于非电力服务,例如化学产品的生产。在这两种情况下,给定的HES都在公共耦合点连接到电网,并要求根据区域性电网运营商基于预测的需求曲线确定的发电量。在交流的这一部分中,对这些高度耦合的HES进行了动态性能分析,以确定其关键的动力学特性和局限性,并规定了最佳解决方案,以最佳地管理和缓解将可再生能源并入能源结构中引入的高可变性。

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