首页> 外文会议>Electrical Insulation and Dielectric Phenomena (CEIDP), 2011 Annual Report Conference on >Metallic particle trajectory in an isolated conductor Gas Insulated Busduct(GIB) with dielectric coated enclosure using Charge Simulation Method
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Metallic particle trajectory in an isolated conductor Gas Insulated Busduct(GIB) with dielectric coated enclosure using Charge Simulation Method

机译:电荷模拟法在带绝缘涂层的绝缘导体气体绝缘母线(GIB)中的金属颗粒轨迹

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In this paper, Dielectric coated outer enclosure of single phase Gas Insulated Busduct(GIB) is simulated for computing the trajectory of contaminated metal particles. A mathematical model is developed to find the movement pattern of a metallic particle in a Gas Insulated Busduct. All forces acting on the metallic particle depends on GIB geometric parameters, electrostatic charge acquired by the particle, electric field present at the particle location, the drag coefficient and Reynold's number. The second order differential equation of moving metallic particle is solved iteratively using Runge Kutta method. Electric fields at the instantaneous particle locations were computed using the Charge Simulation Method (CSM). The movements of metallic particle with Analytical field calculation are compared with charge simulation field calculation methods and presented in this paper.
机译:本文模拟了单相气体绝缘管道(GIB)的介电涂层外壳,计算了被污染的金属颗粒的轨迹。建立了一个数学模型来查找气体绝缘的高架桥中金属颗粒的运动模式。所有作用在金属颗粒上的力均取决于GIB几何参数,颗粒获取的静电荷,颗粒位置处存在的电场,阻力系数和雷诺数。使用Runge Kutta方法迭代求解运动的金属颗粒的二阶微分方程。使用电荷模拟方法(CSM)计算瞬时粒子位置处的电场。将分析场计算的金属颗粒运动与电荷模拟场计算方法进行了比较,并进行了介绍。

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