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Finite-difference algorithm for solving two-dimensional quasi-stationary electromagnetic problems with moving transmitter
N. A. Zaitseva, I. L. Sofronov a M. V. Keldysh Institute for Applied Mathematics, Russian Academy of Sciences
Abstract:
We consider a problem of calculating the electromagnetic field in and nearby the metal pipe walls in the cylindrical coordinate system. Transmitter with low-frequency exciting current is slowly moved along the axis. The quasistationary approximation is used to model the field. We propose a second-order finite difference algorithm with exact non-uniform boundary conditions on the open boundaries of the computational domain in axial direction. The matrix sweep method is used to solve a given problem with multiple right-hand sides generated by the transmitter. Numerical tests to demonstrate efficiency of the proposed method is describe.
Received: 01.08.2006
Citation:
N. A. Zaitsev, I. L. Sofronov, “Finite-difference algorithm for solving two-dimensional quasi-stationary electromagnetic problems with moving transmitter”, Matem. Mod., 19:9 (2007), 79–93
Linking options:
https://www.mathnet.ru/eng/mm1142 https://www.mathnet.ru/eng/mm/v19/i9/p79
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Abstract page: | 425 | Full-text PDF : | 123 | References: | 70 | First page: | 2 |
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