Multiobjective Optimization of a Combined Heating and Power System Based on Compressed-Air Energy Storage and Thermochemical Technology

Author:

Yao Erren1ORCID,Zhong Like2,Li Ruixiong3,Niu Yulei4,Wang Huanran5,Xi Guang6ORCID

Affiliation:

1. Assistant Professor, School of Energy and Power Engineering, Xi’an Jiaotong Univ., Xi’an 710049, People’s Republic of China. ORCID:

2. Ph.D. Candidate, School of Energy and Power Engineering, Xi’an Jiaotong Univ., Xi’an 710049, People’s Republic of China.

3. Assistant Professor, School of Energy and Power Engineering, Xi’an Jiaotong Univ., Xi’an 710049, People’s Republic of China.

4. Senior Engineer, Dept. of Modern Chemistry, Xi’an Modern Chemistry Research Institute, Xi’an 710065, People’s Republic of China.

5. Professor, School of Energy and Power Engineering, Xi’an Jiaotong Univ., Xi’an 710049, People’s Republic of China.

6. Professor, School of Energy and Power Engineering, Xi’an Jiaotong Univ., Xi’an 710049, People’s Republic of China (corresponding author). ORCID: .

Publisher

American Society of Civil Engineers (ASCE)

Subject

Waste Management and Disposal,Energy Engineering and Power Technology,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment,Civil and Structural Engineering

Reference39 articles.

1. Modelling and control of advanced adiabatic compressed air energy storage under power tracking mode considering off-design generating conditions

2. Investigation on the mid-temperature solar thermochemical power generation system with methanol decomposition

3. Pilot-scale demonstration of advanced adiabatic compressed air energy storage, Part 2: Tests with combined sensible/latent thermal-energy storage;Becattini V.;J. Storage Mater.,2018

4. Bejan, A., and G. Tsatsaronis. 1996. Thermal design and optimization. New York: Wiley.

5. A review on compressed air energy storage: Basic principles, past milestones and recent developments

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