水力发电
灵活性(工程)
可再生能源
电力系统
水力发电
计算机科学
发电
变量(数学)
豆马勃属
工程类
可靠性工程
功率(物理)
数学
电气工程
数学分析
统计
物理
量子力学
作者
Daniel Huertas‐Hernando,Hossein Farahmand,Hannele Holttinen,Juha Kiviluoma,Erkka Rinne,Lennart Söder,Michael Milligan,Eduardo Ibáñez,Sergio Martín‐Martínez,Emilio Gómez‐Lázaro,Ana Estanqueiro,Luı́s Rodrigues,Luis Carr,Serafin van Roon,Antje Orths,Peter Børre Eriksen,Alain Forcione,Nickie Menemenlis
标识
DOI:10.1002/9781119508311.ch23
摘要
In order to effectively utilize hydro production flexibility, a sufficient amount of transmission capacity has to be available between the hydro-dominated part of the system and the part that requires operational flexibility. This chapter starts with a rough categorization of "base" hydropower flexibility, investigating the types of hydropower plants installed in power systems today. The "effective" hydropower flexibility available to support the integration of variable generation is a far more complex and case-specific aspect. It is discussed through national experiences. The chapter presents potential developments that would increase the participation of hydropower and discuss the ensuing challenges. Modeling a flow-based hydro system is a complex exercise, as is modeling the power system. Especially important is the correct assessment of hydropower flexibility to support power systems with a large share of variable generation (VG) and its value for storage. With increasing uncertainty and variability, a stochastic scheduling approach should yield lower costs.
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