涉及核电的多源调峰经济运行研究

Ge Weichun, S. Peng, L. Jiajue, Z. Tao, Zhang Qiang, Wang Chao
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引用次数: 2

摘要

随着经济的发展,风力发电等不可调度资源的大规模接入,电网负荷峰谷差异也逐年增大,使得以火电机组为调峰主体的电网调峰压力更加严峻。研究了核电机组运行特点,建立了抽水蓄能-核电-风电-火电项目多源协同规划模型。优化目标是使同等年值的总成本最小化,并以核电的安全可调域和运行为约束条件。算例表明,本文建立的模型提高了系统的风电吸收能力,有效缓解了常规机组的峰值压力,提高了电力系统运行的经济效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Economic Operation of Multi-source Peak-Shaving Involving Nuclear Power
With the development of economy, large-scale access of wind power generation and other non-schedulable resources, and the difference in load peaks and valleys in the power grid have also increased year by year, making the peaking pressure of power grids with thermal power generators as the peak-shaving subject even more severe. This paper studies the operating characteristics of nuclear power units and establishes a multi-source coordinated planning model for pumped-storage-nuclear-wind power-thermal power projects. The optimization goal is to minimize the overall cost of equal annual values, and to use nuclear power's safety-adjustable domains and operations as constraints. The example shows that the model built in this paper improves the capacity of system wind power absorption, and effectively relieves the peak pressure of conventional units, and improves the economic efficiency of power system operation.
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