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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Electric field modeling and field formation mechanism in HVDC SF/sub 6/ gas insulated systems
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Electric field modeling and field formation mechanism in HVDC SF/sub 6/ gas insulated systems

机译:HVDC SF / sub 6 /气体绝缘系统中的电场建模和场形成机理

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摘要

This paper reports on the electric field behavior in HVDC SF/sub 6/ gas insulated systems. In the field model definitions, the SF/sub 6//epoxy interfaces are assumed as thin slightly conducting layers with non-zero thickness. The boundary conditions involving surface-reduced parameters of these layers are adopted. This allows avoidance of problems of calculation regarding the proximity of interfaces between subdomains. The boundary-value problem describing capacitive-resistive time-varying electric field is formulated. On this basis, the transient HVDC electric field model and time domain-calculating algorithm are constructed. The model accounts simultaneously for both the surface layer properties and bulk conduction parameters of the bounding dielectrics, while surface conductivity may be specified as a non-linear or an arbitrary function. The method employs direct integration of a continuity equation in the time domain with the calculation of an electrostatic field approximation at each integration step. The basic features and applicability of the method are discussed. The model has been applied for analysis of HVDC electric field formation mechanism in SF/sub 6//epoxy insulation. It is demonstrated that charge accumulation phenomena cannot be described by a single time-stable mechanism. Some directions regarding further development of the field model and calculating algorithm are suggested.
机译:本文报告了HVDC SF / sub 6 /气体绝缘系统中的电场行为。在现场模型定义中,SF / sub 6 //环氧树脂界面被假定为具有非零厚度的薄的微导电层。采用涉及这些层的表面还原参数的边界条件。这允许避免关于子域之间的接口的接近度的计算问题。提出了描述容阻时变电场的边值问题。在此基础上,建立了暂态高压直流输电电场模型和时域计算算法。该模型同时考虑了表面介电层的表面层特性和介电常数,而表面电导率可以指定为非线性或任意函数。该方法在时域中采用连续性方程的直接积分,并在每个积分步骤计算静电场近似值。讨论了该方法的基本特征和适用性。该模型已用于分析SF / sub 6 //环氧绝缘中的HVDC电场形成机理。证明了电荷积累现象不能用单一的时间稳定机制来描述。提出了关于进一步开发现场模型和计算算法的一些指导。

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