水力发电学报2025,Vol.44Issue(1):98-110,13.DOI:10.11660/slfdxb.20250108
水风光多能互补系统的韧性及其评估方法
Resilience of hydro-wind-solar multi-energy complementary system and its evaluation method
摘要
Abstract
As global climate change intensifies and extreme events occur more frequently,the safe and stable operation of hydro-wind-solar multi-energy complementary systems faces great challenges,necessitating a rational evaluation of the resilience of these systems under extreme event disturbances.This study first elaborates on the complementary characteristics of hydropower,wind,and solar energy,and examines the types of disturbances confronted by these integrated systems.Then,a new concept of resilience for a complementary system is discussed,and a three-stage conceptual model for resilience is developed.Based on this framework,we select monthly,seasonal,and annual timescales and specify power output thresholds for the complementary system,and formulate an evaluation index and methodology for resilience assessment based on power output loss.Finally,to evaluate the resilience,a case study is conducted on a clean energy base in the upper Yellow River.The assessment results validate the effectiveness of the evaluation index and methodology.Notably,hydropower energy demonstrates superior resilience compared to wind and solar power,and the system's overall resilience is enhanced significantly through utilizing the complementary nature of hydropower,wind,and solar energy.This study helps decision-making for resource allocation,scheduling strategies,and safe operation of integrated hydro-wind-solar energy systems.关键词
水风光多能互补系统/极端事件扰动/韧性三阶段概念模型/韧性评估/出力阈值Key words
hydro-wind-solar multi-energy complementary system/extreme event disturbances/three-stage conceptual model of resilience/resilience assessment/output threshold value分类
信息技术与安全科学引用本文复制引用
樊思洋,颜克胜,王荣琴,任康,郑霞忠..水风光多能互补系统的韧性及其评估方法[J].水力发电学报,2025,44(1):98-110,13.基金项目
湖北省教育厅科学技术研究计划优秀中青年人才项目(Q20231212) (Q20231212)
湖北省高等学校哲学社会科学研究项目(22Q030) (22Q030)
水电工程施工与管理湖北省重点实验室开放基金(2023KSD29) (2023KSD29)