气体绝缘开关柜(GIS)加热特性优化

Muhammad Shahid Mastoi, M. S. Nazir, M. Chandía, Muhammad Shakeel Khosa, Hafiz Muhammad Jamsheed Nazir
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引用次数: 8

摘要

保护类型的设备是电力系统的支柱。近年来,气体绝缘金属封闭开关柜(GIS)已成为电力系统保护的重要组成部分。高压气体绝缘金属封闭开关柜可能出现过热,并可能导致致命事故。电气设备的小型化和高性能凸显了热分析的重要性。本文研究了气体绝缘金属封闭开关柜的模型简化方法,并根据GIS的热源对GIS的复杂结构进行了简化。GIS的热源包括导体焦耳热和接触电阻加热。此外,本文还考虑了自然对流SF6的冷却效果。采用交流电磁分析和流固耦合分析的方法,选择了涡流损耗作用下的谐波和对流散热(壳体和空气)的接触电阻法。最后得到气体绝缘金属封闭开关柜的温度分布。通过温升试验验证了仿真结果。对气体绝缘金属封闭开关柜进行了热仿真分析,为进一步研究和设计改进的保护产品提供了理论和实验参考。
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Optimization of heating characteristics of gas insulated switch-gear (GIS)
Protection types of equipment are the mainstay of a power system. Recently, gas insulated metal-enclosed switch-gear (GIS) has developed the most important part of a power system protection. High-pressure gas insulated metal-enclosed switchgear may suffer overheating and can cause fatal accidents. The miniaturization and high performance of electrical equipment highlight the importance of thermal analysis. In this paper, the model simplification method of gas insulated metal-enclosed switchgear is studied and the complex structure of GIS is simplified according to the heat source of GIS. The heat source of GIS includes Joule heat of conductor and contact resistance heating. Furthermore, this paper considers the cooling effect of natural convection SF6. By employing the method of AC electromagnetic analysis and fluid-solid coupling analysis, harmonics under the effect of eddy current losses and the contact resistance method for the convection heat dissipation ( for shell and air) have been selected. Finally, obtain the temperature distribution of gas insulated metal-enclosed switchgear. The simulation results are verified by temperature rise test. Thermal simulation analysis of gas insulated metal-enclosed switchgear is carried out, which can provide a theoretical and experimental reference for further research and design of improved protected products.
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