The Modeling of the Electric Heating and Cooling System of the Integrated Energy System in the Coastal Area
Zuo, X.; Dong, M.; Gao, F., and Tian, S., 2020. The modeling of the electric heating and cooling system of the integrated energy system in the coastal area. In: Yang, Y.; Mi, C.; Zhao, L., and Lam, S. (eds.), Global Topics and New Trends in Coastal Research: Port, Coastal and Ocean Engineering. Jour...
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| Published in: | Journal of coastal research Vol. 103; no. sp1; pp. 1022 - 1029 |
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| Main Authors: | , , , |
| Format: | Journal Article |
| Language: | English |
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Fort Lauderdale
Coastal Education and Research Foundation
01.06.2020
Allen Press Publishing Allen Press Inc |
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| ISSN: | 0749-0208, 1551-5036 |
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| Abstract | Zuo, X.; Dong, M.; Gao, F., and Tian, S., 2020. The modeling of the electric heating and cooling system of the integrated energy system in the coastal area. In: Yang, Y.; Mi, C.; Zhao, L., and Lam, S. (eds.), Global Topics and New Trends in Coastal Research: Port, Coastal and Ocean Engineering. Journal of Coastal Research, Special Issue No. 103, pp. 1022–1029. Coconut Creek (Florida), ISSN 0749-0208. The accurate analysis of the coupling relationship of the electric heating and cooling system is the basis of its load calculation. Because the current method does not consider the analysis of the coupling relationship of the electric heating and cooling system in the design, the accuracy of the load calculation results is low. In order to solve this problem, the load modeling of the electric heating and cooling system of the comprehensive energy system in the coastal area is studied. Through the calculation of power network, natural gas network and comprehensive energy flow, the power flow value of electric heating and cooling system of comprehensive energy system is obtained. On this basis, according to the energy conversion efficiency of the equipment included in the energy hub and the distribution ratio of electric energy and gas, the coupling relationship of the electric heating and cooling system is obtained. According to the coupling relationship of the electric heating and cooling system, the load model of the electric heating and cooling system is constructed, and the optimal solution of the model is calculated by Grey Wolf algorithm to complete the modeling research of the electric heating and cooling system of the comprehensive energy system in the coastal area. The simulation results show that the model designed in this paper can obtain the accurate calculation results of the active power and reactive power of the electric heating and cooling system, and the calculation of the load of the electric heating and cooling system is time-consuming, accurate and reliable. |
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| AbstractList | Zuo, X.; Dong, M.; Gao, F., and Tian, S., 2020. The modeling of the electric heating and cooling system of the integrated energy system in the coastal area. In: Yang, Y.; Mi, C.; Zhao, L., and Lam, S. (eds.), Global Topics and New Trends in Coastal Research: Port, Coastal and Ocean Engineering. Journal of Coastal Research, Special Issue No. 103, pp. 1022–1029. Coconut Creek (Florida), ISSN 0749-0208.The accurate analysis of the coupling relationship of the electric heating and cooling system is the basis of its load calculation. Because the current method does not consider the analysis of the coupling relationship of the electric heating and cooling system in the design, the accuracy of the load calculation results is low. In order to solve this problem, the load modeling of the electric heating and cooling system of the comprehensive energy system in the coastal area is studied. Through the calculation of power network, natural gas network and comprehensive energy flow, the power flow value of electric heating and cooling system of comprehensive energy system is obtained. On this basis, according to the energy conversion efficiency of the equipment included in the energy hub and the distribution ratio of electric energy and gas, the coupling relationship of the electric heating and cooling system is obtained. According to the coupling relationship of the electric heating and cooling system, the load model of the electric heating and cooling system is constructed, and the optimal solution of the model is calculated by Grey Wolf algorithm to complete the modeling research of the electric heating and cooling system of the comprehensive energy system in the coastal area. The simulation results show that the model designed in this paper can obtain the accurate calculation results of the active power and reactive power of the electric heating and cooling system, and the calculation of the load of the electric heating and cooling system is time-consuming, accurate and reliable. The accurate analysis of the coupling relationship of the electric heating and cooling system is the basis of its load calculation. Because the current method does not consider the analysis of the coupling relationship of the electric heating and cooling system in the design, the accuracy of the load calculation results is low. In order to solve this problem, the load modeling of the electric heating and cooling system of the comprehensive energy system in the coastal area is studied. Through the calculation of power network, natural gas network and comprehensive energy flow, the power flow value of electric heating and cooling system of comprehensive energy system is obtained. On this basis, according to the energy conversion efficiency of the equipment included in the energy hub and the distribution ratio of electric energy and gas, the coupling relationship of the electric heating and cooling system is obtained. According to the coupling relationship of the electric heating and cooling system, the load model of the electric heating and cooling system is constructed, and the optimal solution of the model is calculated by Grey Wolf algorithm to complete the modeling research of the electric heating and cooling system of the comprehensive energy system in the coastal area. The simulation results show that the model designed in this paper can obtain the accurate calculation results of the active power and reactive power of the electric heating and cooling system, and the calculation of the load of the electric heating and cooling system is time-consuming, accurate and reliable. |
| Author | Zuo, Xue Tian, Shiming Gao, Fengkai Dong, Mingyu |
| Author_xml | – sequence: 1 givenname: Xue surname: Zuo fullname: Zuo, Xue organization: Key Laboratory of Modern Power System Simulation and Control & Renewable Energy Technology (Ministry of Education) Northeast Electric Power University Jilin 132012, China – sequence: 2 givenname: Mingyu surname: Dong fullname: Dong, Mingyu organization: Departments of Energy Consumption Electric Power Research Institute of China Beijing 100085, China – sequence: 3 givenname: Fengkai surname: Gao fullname: Gao, Fengkai organization: Key Laboratory of Modern Power System Simulation and Control & Renewable Energy Technology (Ministry of Education) Northeast Electric Power University Jilin 132012, China – sequence: 4 givenname: Shiming surname: Tian fullname: Tian, Shiming organization: Departments of Energy Consumption Electric Power Research Institute of China Beijing 100085, China |
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| ContentType | Journal Article |
| Copyright | Coastal Education and Research Foundation, Inc. 2020 Copyright Allen Press Inc. Summer 2020 |
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| Snippet | Zuo, X.; Dong, M.; Gao, F., and Tian, S., 2020. The modeling of the electric heating and cooling system of the integrated energy system in the coastal area.... The accurate analysis of the coupling relationship of the electric heating and cooling system is the basis of its load calculation. Because the current method... |
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| SubjectTerms | Algorithms Coastal engineering Coastal inlets Coastal research Coastal zone Coasts Comprehensive energy system Cooling Cooling systems Coupling Electric heating electric heating and cooling system ENERGY Energy conversion Energy conversion efficiency Energy distribution Energy flow Heating Integrated energy systems load calculation loss Modelling Natural gas Ocean engineering Offshore engineering Power flow Reactive power |
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| Title | The Modeling of the Electric Heating and Cooling System of the Integrated Energy System in the Coastal Area |
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