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Mesh-free Monte Carlo method for electrostatic problems with floating potentials

delete2024-07-07
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OA
AI
W
Wenjing Yin
Y
Y.Y. Wang
邓洪 (Hong Deng)
J
Jiawei Wang
X
Xiaoke Gao
R
Ruoyu Huang
K
Kun He
W
Weijiang Chen
T
Tianyu Dong *
DOI:10.1049/hve2.12468delete
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Abstract

Abstract

En 中文
Numerical simulation plays a crucial role in the analysis and design of power equipment, such as lightning protection devices, which may become inefficient using traditional grid-based methods when handling complex geometries of large problems. The authors propose a grid-free Monte Carlo method to handle electrostatic problems of complex geometry for both the interior and exterior domains, which is governed by the Poisson equation with a floating potential boundary condition that is neither a pure Dirichlet nor a Neumann condition. The potential and gradient at any given point can be expressed in terms of integral equations, which can be estimated recursively within the walk-on-sphere algorithm. Numerical examples have been demonstrated, including the evaluation of the mutual capacitance matrix of multi-conductor structures and lighting striking near real fractal trees. The proposed method shows advantages in terms of geometric flexibility and robustness, output sensitivity, and parallelism, which may become a candidate for game-changing numerical methods and exhibit great potential applications in high-voltage engineering.
Keywords:
SPHERES ALGORITHM
WALK

Journal

High Voltage cover
High Voltage
IF:
4.9
Papers:
981
Citations:
2.9K

Organization

X
xi'an jiaotong university
Scholars:
9.2W
Papers: 6.6W
Citations: 75