Numerical and Analytical Study of the Magnetic Field Distribution in a Three-Solenoid System

Fuente: arXiv
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Main Authors: Behtouei, Mostafa, Bacci, Alberto, Carillo, Martina, Comelli, Moreno, Faillace, Luigi, Migliorati, Mauro, Verra, Livio, Spataro, Bruno
Format: Preprint
Published: 2025
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author Behtouei, Mostafa
Bacci, Alberto
Carillo, Martina
Comelli, Moreno
Faillace, Luigi
Migliorati, Mauro
Verra, Livio
Spataro, Bruno
author_facet Behtouei, Mostafa
Bacci, Alberto
Carillo, Martina
Comelli, Moreno
Faillace, Luigi
Migliorati, Mauro
Verra, Livio
Spataro, Bruno
contents This paper investigates the magnetic fields produced by a three-coil system, focusing on how different mesh resolutions affect the accuracy of the results. Using both the Poisson solver, as well as a numerical approach based on the solution of fractional integrals, the study examines coils with dimensions of 80 mm by 160 mm and a radius of 15.5 mm, each carrying a current of 200 A. The research explores how varying mesh step sizes within the coil regions influences the simulations accuracy and convergence. The results are analyzed along a line parallel to the central axis at a distance equal to half of the solenoid's radius.. The findings emphasize the consistency of the numerical results, the compatibility of the solvers, and offer insights into further optimization strategies for more efficient simulations.
format Preprint
id arxiv_https___arxiv_org_abs_2504_12065
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Numerical and Analytical Study of the Magnetic Field Distribution in a Three-Solenoid System
Behtouei, Mostafa
Bacci, Alberto
Carillo, Martina
Comelli, Moreno
Faillace, Luigi
Migliorati, Mauro
Verra, Livio
Spataro, Bruno
Accelerator Physics
This paper investigates the magnetic fields produced by a three-coil system, focusing on how different mesh resolutions affect the accuracy of the results. Using both the Poisson solver, as well as a numerical approach based on the solution of fractional integrals, the study examines coils with dimensions of 80 mm by 160 mm and a radius of 15.5 mm, each carrying a current of 200 A. The research explores how varying mesh step sizes within the coil regions influences the simulations accuracy and convergence. The results are analyzed along a line parallel to the central axis at a distance equal to half of the solenoid's radius.. The findings emphasize the consistency of the numerical results, the compatibility of the solvers, and offer insights into further optimization strategies for more efficient simulations.
title Numerical and Analytical Study of the Magnetic Field Distribution in a Three-Solenoid System
topic Accelerator Physics
url https://arxiv.org/abs/2504.12065