引用本文:李洪涛,舒乃秋,孙国霞,谢志扬,金向朝.基于相似理论与准则关联式的气体绝缘母线电磁场-温度场综合模拟[J].电力自动化设备,2014,34(9):
LI Hongtao,SHU Naiqiu,SUN Guoxia,XIE Zhiyang,JIN Xiangchao.Comprehensive simulation of electromagnetic-temperature field in GIB based on similarity theory and nondimensional correlation[J].Electric Power Automation Equipment,2014,34(9):
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基于相似理论与准则关联式的气体绝缘母线电磁场-温度场综合模拟
李洪涛1, 舒乃秋1, 孙国霞2, 谢志扬2, 金向朝2
1.武汉大学 电气工程学院,湖北 武汉 430072;2.广东电网公司佛山供电局,广东 佛山 528000
摘要:
针对原型气体绝缘母线(GIB)温升试验耗时长且成本高的不足,提出一种基于相似理论与准则关联式的电磁场-温度场综合模拟方法。借助控制方程组与准则关联式建立温升过程中功率损耗、对流传热以及辐射传热的数学模型,通过相似分析推导出GIB多物理场的温升相似准则,并设计相似模型。利用有限元方法对比不同负荷电流下,原型GIB与相似模型的导体与外壳的电流密度、功率损耗、对流传热系数以及温度分布,并与温升试验数据进行对比分析,验证了所提模拟方法的有效性。
关键词:  温升  试验  气体绝缘母线  电磁场  多物理场  有限元法  模型  相似理论
DOI:
分类号:
基金项目:国家重点基础研究发展计划 (973计划) 资助项目(2009CB724500)
Comprehensive simulation of electromagnetic-temperature field in GIB based on similarity theory and nondimensional correlation
LI Hongtao1, SHU Naiqiu1, SUN Guoxia2, XIE Zhiyang2, JIN Xiangchao2
1.School of Electrical Engineering,Wuhan University,Wuhan 430072,China;2.Foshan Power Supply Bureau of Guangdong Power Grid,Foshan 528000,China
Abstract:
Aiming at the long time consumption and high cost of prototype GIB(Gas Insulated Bus)temperature-rise experiment,a method of comprehensive electromagnetic-temperature field simulation based on similarity theory and nondimensional correlation is proposed. The mathematical models of power loss,convection and radiation are established according to the governing equations and the nondimensional correlations,the temperature-rise similarity criteria of GIB multi-physical field is derived by similarity analysis and the similarity model is designed. Finite element method is applied to compare the current density,power loss,convective heat transfer coefficient and temperature distribution of conductor/tank between the prototype GIB and the similarity model for different load currents. They are also compared with the data of temperature-rise experiment,which verifies the effectiveness of the proposed method.
Key words:  temperature rise  testing  gas insulated bus  electromagnetic fields  multi-physical field  finite element method  models  similarity theory

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