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Full Description
Advanced Modeling, Analysis and Optimization of Thermal and Integrated Energy Systems introduces readers to the cutting-edge "heat current method," a breakthrough in accurately modeling complex thermodynamic systems. This book thoroughly examines the challenges inherent in renewable energy transitions and demonstrates how holistic power-thermal system optimization can play a pivotal role in sustainability efforts. Authored by leading experts, it provides both a foundational overview and advanced techniques, making it an essential resource for researchers, engineers, and professionals who are driving innovation in thermal engineering and energy system optimization.
The text delves into the fundamentals and applications of the heat current method, offering practical frameworks for efficient simulation and optimization of integrated power-thermal systems. Additional chapters explore strategies for coordinating flexibility and efficiency to better accommodate renewable energy sources. With its focus on advanced methodologies and real-world solutions, the book is particularly valuable for those involved in system optimization and the integration of sustainable energy technologies.
Contents
I. Introduction
2. Fundamentals of modelling and optimizing thermodynamic and integrated thermal-power systems
3. Heat current method for thermodynamic system modelling
4. Efficient simulation and optimization of thermodynamic systems via heat current method
5. Holistic modelling and analysis of integrated power-thermal systems
6. Coordinating flexibility and efficiency for renewable energy accommodation in integrated power-thermal systems
7. Summary and future trends



