最新消息:希望老用户进群讨论下未来网站的规划事宜,群:https://t.me/+kn2PVq7sV541OWJk

Modelling Coils in COMSOL Multiphysics

未分类 dsgsd 3浏览 0评论
th_ggJmTa6xBzcjX3kBsAZWKj6EcdTcWMSr.avif_

Published 2/2026
Created by Rahul Krishna Bhat
MP4 | Video: h264, 1920×1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: Beginner | Genre: eLearning | Language: English | Duration: 14 Lectures ( 53m ) | Size: 1.34 GB

Learn the use of single conductor coils, homogenized multiturn coils, connected boundaries and infinite element domains.

What you’ll learn
✓ Modeling Linear, Circular and Numeric Homogenized Multiturn Coils
✓ Modeling Open and Closed Single Conductor Coils
✓ Modeling Single Conductor Coils using Connected Boundaries
✓ Using Infinite Element Domains to reduce size of surrounding air domain
✓ Modeling Frequency Response of a Single Conductor Coil

Requirements
● No pre-requisite. Some exposure to Finite Element Method (FEM) would be an advantage.

Description
A coil is a basic building block of any electromagnetic device such as transformer, motor, relay, solenoid or electromagnet. Detailed knowledge of all the available coil modelling features will equip you to confidently perform any electromagnetic simulation.

This course is extensively about modelling coils in COMSOL Multiphysics. You will learn the use of the geometry part library and modelling all variants of single conductor and homogenized multiturn coils. You will learn how to use Infinite Element Domains to reduce the size of air domain surrounding your electromagnetic device. In the final tutorial, you will learn Frequency Response Analysis (FRA) of a coil to extract the impedance of the coil as a function of the excitation frequency.

Course structure

• Section 1: Linear, Circular and Numeric Homogenized Multiturn Coils

• Section 2: Open and Closed Single Conductor coils

• Section 3: Modelling Single Conductor Coils using Connected Boundaries

• Section 4: Use of Infinite Element Domains

• Section 5: Modelling Frequency Response of a Single Conductor Coil

Why take this course

This course covers all the variants and approaches required for coil modelling. All the technical intricacies involved in modelling coils can be learned quickly with minimum investment of time, in one place.

Disclaimer

This course is not affiliated with, endorsed by, or sponsored by COMSOL AB. COMSOL Multiphysics® is a registered trademark of COMSOL AB. For support and licensing, please visit the COMSOL official website.

Password/解压密码www.tbtos.com

资源下载此资源仅限VIP下载,请先

转载请注明:0daytown » Modelling Coils in COMSOL Multiphysics

您必须 登录 才能发表评论!