2001IEEE Transactions on MagneticsRequires access

A comparison of formulations for 3D finite element modeling of electromagnetic launchers

D. Rodger, H.C. Lai

Open publisher page 33 citations

Abstract

The electromagnetic launcher at speed is a challenging computational problem as fast time transient electromagnetic fields are involved and the velocity of the moving parts is designed to be very high. A large number of formulations are now available for modeling the electromagnetic behavior of moving conductor devices in 3D. These methods vary in computational expense and accuracy. In this paper, the authors describe and compare some of these methods, and show some examples.

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What this paper is about

The electromagnetic launcher at speed is a challenging computational problem as fast time transient electromagnetic fields are involved and the velocity of the moving parts is designed to be very high. A large number of formulations are now available for modeling the electromagnetic behavior of moving conductor devices in 3D. These methods vary in computational expense and accuracy. In this paper, the authors describe and compare some of these methods, and show some examples.

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Available abstract

The electromagnetic launcher at speed is a challenging computational problem as fast time transient electromagnetic fields are involved and the velocity of the moving parts is designed to be very high. A large number of formulations are now available for modeling the electromagnetic behavior of moving conductor devices in 3D. These methods vary in computational expense and accuracy. In this paper, the authors describe and compare some of these methods, and show some examples.

Key concepts: Conductor, Finite element method, Computational electromagnetics, Electromagnetic field, Transient (computer programming), Computer science, Physics, Mathematics

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