A transient analysis framework for hydropower generating systems under parameter uncertainty by integrating physics-based and data-driven models
Author:
Funder
China Postdoctoral Science Foundation
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference53 articles.
1. The changing role of hydropower: challenges and opportunities;Dhabi;International Renewable Energy Agency,2023
2. Pump as turbine cavitation performance for both conventional and reverse operating modes: a review;Kan;Renewable Sustainable Energy Rev,2022
3. 2023 world hydropower outlook: international hydropower association,2023
4. Transient analysis of a hydropower plant with a super-long headrace tunnel during load acceptance: instability mechanism and measurement verification;Hu;Energy,2023
5. Experimental and numerical investigation on head losses of a complex throttled surge tank for refined hydropower plant simulation;Ma;Renew Energy,2022
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