A generalised dynamic energy flow model in multi‐energy network

Author:

Cai Qinqin1,Yi Zhongkai1,Xu Ying1,Zhu Yongqiang2,Ding Zhaohao2,Xi Mengfei3,Zhu Xuecheng4,Rong Shuang4,Sun Yong5,Kuang Honghui6

Affiliation:

1. School of Electrical Engineering and Automation Harbin Institute of Technology Harbin Heilongjiang China

2. School of Electrical and Electronic Engineering North China Electric Power University Beijing China

3. Nanjing Branch of China Merchants Bank Nanjing China

4. Heilongjiang Electric Power Science Research Institute State Grid Heilongjiang Electric Power Company Limited Harbin China

5. State Grid Jilin Electric Power Company Limited Jinlin China

6. Beijing QU Creative Technology Company Limited Beijing China

Abstract

AbstractThe analysis and calculation of dynamic energy flow for different energy forms are the basic work for the coordinated dispatching and operation of multi‐energy networks (MENs). A universal mathematical description of energy transfer is proposed based on the concept of intensity quantity and extensive quantity in thermodynamics. This paper derives the unified energy dynamic transfer equations of the electrical energy, incompressible viscous fluid, compressible gas, and heat transfer, that is, a generalised wave equation is established with the distributed parameters that characterise energy dissipation, storage and conductivity. Furthermore, the finite difference method is adopted to calculate the dynamic energy flow that varies with time and space. In the case analysis, the independent solution is firstly performed under four designed cases, and then the MEN composed of heat and gas is jointly solved. The calculation example verifies the feasibility and effectiveness of the proposed method.

Funder

Science and Technology Foundation of State Grid Corporation of China

Publisher

Institution of Engineering and Technology (IET)

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