Research on Market Mechanism of Thermal Power Flexible Transformation to Promote Clean Energy Consumption

Author:

Shi Yu,Jiang Minglei,Gao Xuefeng,Zhang Yuanmei,Li Hao

Abstract

Abstract By continuously developing a new power system aiming at “double carbon”, the peak shaving pressure of the power system continues to rise and the existing peak shaving ability is slightly weakened. But the historic energy structure in Northeast China has more features of thermal power generation. Therefore, it is urgent to improve the demand for deep peak shaving by a flexible combination of thermal power plants to realize renewable energy consumption. In view of this, this paper analyzes the current power market mechanism in Northeast China, constructs a new energy consumption model for flexible transformation of thermal power, and makes a simulation analysis in the area with wind fire ratio of 1:4. Finally, through flexible conversion of thermal power unit, wind power consumption can be better realized and the problem of wind abandonment can be solved. The research results can provide reference for formulating relevant policies and production models.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference8 articles.

1. Flexible transformation technology of thermal power units based on high temperature molten salt heat storage and its application prospect;Li;Southern energy construction,2021

2. Multi-stage joint decision-making method for flexible transformation of thermal power units and transmission network planning;Li;Global energy Internet,2021

3. Flexible transformation planning model of thermal power units for deep peak shaving;Yang;Power system automation,2021

4. Optimal dispatching of electric thermal energy integrated system under the background of large-scale thermal power flexibility transformation;Xu;Power construction,2021

5. Analysis of the impact of alternative technology and energy storage technology on the development of pumped storage;Cao;China foreign energy,2021

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