It is especially helpful if you are just getting started with adding the physics for a multiphysics model. We begin the course by discussing and showing the automated implementation, which is the most convenient and ideal to use in any case. Each approach is advantageous for different modeling scenarios and varies in terms of ease of implementation and amount of effort required from the user. In our new Learning Center course, Defining Multiphysics Models, one approach is covered in each respective part of the course, in the order outlined above. In COMSOL Multiphysics, there are three different approaches: When adding the physics for a multiphysics model, there are a number of ways in which you can handle the physics setup. Learn about our three-part Learning Center course on this topic below… The COMSOL® software provides a plethora of built-in multiphysics couplings and even enables you to implement your own physics couplings. A major strength of the COMSOL Multiphysics® software is how easily such cross-disciplinary interactions, which we refer to as multiphysics interactions, can be accounted for. However, natural and engineering problems often cross these utilitarian borders. To help understand the complicated universe we live in, we have traditionally compartmentalized physics phenomena into distinct disciplinary specializations.
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