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基于Modelica的建模仿真技术在供热领域的应用

王安庆 王海超 端木琳

煤气与热力2026,Vol.46Issue(5):5-15,36,12.
煤气与热力2026,Vol.46Issue(5):5-15,36,12.

基于Modelica的建模仿真技术在供热领域的应用

Application of Modelica-Based Modeling and Simulation Technology in Heating Field

王安庆 1王海超 1端木琳1

作者信息

  • 1. 大连理工大学,辽宁大连 116024
  • 折叠

摘要

Abstract

The research progress on the application of Modelica-based modeling and simulation technology in the field of heating is summarized.The Modelica lan-guage is an ideal modeling language in engineering,which seamlessly supports physical and control design and facilitates collaboration among tools across differ-ent domains.Model libraries developed based on Mod-elica provide foundational models for studying the re-newable energy integration in heating systems,while the simulation software developed using Modelica of-fers platform support for the modeling,simulation,and control optimization of heating systems.In the field of fault detection and diagnosis,Modelica models provide accurate,controllable,and low-cost fault scenario data,serving as high-quality training samples for artificial neural networks.In control optimization problems,Modelica models provide computationally efficient,ac-curate,and stable dynamic models for advanced con-trol algorithms.Co-simulation methods offer feasible approaches for research on renewable energy integra-tion and fault diagnosis.To fully leverage the advan-tages of the Modelica language,further research is needed in the development of open-source libraries and the construction of complex models.By combining artificial neural network algorithms,the transition from physics-based models to data-centric models can be achieved to enhance the optimization efficiency of heat-ing system frameworks.

关键词

供热/Modelica语言/建模仿真/可再生能源/控制与优化/联合仿真

Key words

heating/Modelica language/modeling and simulation/renewable energy/control and optimiza-tion/co-simulation

分类

建筑与水利

引用本文复制引用

王安庆,王海超,端木琳..基于Modelica的建模仿真技术在供热领域的应用[J].煤气与热力,2026,46(5):5-15,36,12.

基金项目

科技部中芬政府间国际科技合作项目"基于数字孪生的供热系统全网动态优化及低碳智慧调控关键技术研究"(2021YFE0116200) (2021YFE0116200)

煤气与热力

1000-4416

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