Paper
6 February 2024 Research on new generation integrated energy system
Huiling Qin, Chengyu He, Min Cheng, Xiqiao Lin, Zhijun Chen, Chunli Zhou
Author Affiliations +
Proceedings Volume 12979, Ninth International Conference on Energy Materials and Electrical Engineering (ICEMEE 2023); 129791O (2024) https://doi.org/10.1117/12.3015499
Event: 9th International Conference on Energy Materials and Electrical Engineering (ICEMEE 2023), 2023, Guilin, China
Abstract
Due to global energy shortages and resource constraints, resource-based development is unsustainable. The deterioration of the basic conditions for human survival is becoming increasingly evident. The environmental system of the energy economy is an important component of sustainable development in China, and how to achieve the harmonious development of the three systems is significant for the development of our economy. To meet these challenges comprehensively, we must embark on a path of innovative development, vigorously change the energy development regime and reform the energy system. In this paper, the integrated thermal electric power system model with the minimum operating cost and the environmental cost of carbon dioxide emissions as the objective function is established. According to the model, the power flow constraint conditions of the power system, the natural gas network dynamic flow constraint conditions, and the thermal network dynamic flow constraint conditions are established. The daily planning model for the integrated power, gas, heat, and hydrogen system proposed in this paper, which takes into account economics and CO2 emissions, has been tested on the integrated power, gas, heat, and hydrogen system. The developed linear mixed-integer model was solved using the Gurobi 9.0.2 solver. Finally, the key technologies of the new generation of comprehensive energy are analyzed.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Huiling Qin, Chengyu He, Min Cheng, Xiqiao Lin, Zhijun Chen, and Chunli Zhou "Research on new generation integrated energy system", Proc. SPIE 12979, Ninth International Conference on Energy Materials and Electrical Engineering (ICEMEE 2023), 129791O (6 February 2024); https://doi.org/10.1117/12.3015499
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KEYWORDS
Hydrogen energy

System integration

Hydrogen

Carbon

Carbon monoxide

Pollution control

Pipes

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