Multiphysics simulation: Difference between revisions

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==Discretization method==
Multiphysics is usually numerical implemented with [[Discretization|discretization]] methods such as [[finite element method]], [[finite difference method]], and [[finite volume method]]. Many software packages mainly rely on the finite element method or similar commonplace numerical methods for simulating coupled physics: thermal stress, electro- and acousto- magnetomechanical interaction.<ref>{{cite journal |last1=Bagwell |first1=Scott |last2=Ledger |first2=Paul D |last3=Gil |first3=Antonio J |last4=Mallett |first4=Mike |last5=Kruip |first5=Marcel |title=A linearised ''hp -finite''–finite element framework for acousto-magneto-mechanical coupling in axisymmetric MRI scanners: ACOUSTO-MAGNETO-MECHANICAL COUPLING IN MRI SCANNERS |journal=International Journal for Numerical Methods in Engineering |date=7 December 2017 |volume=112 |issue=10 |pages=1323–1352 |doi=10.1002/nme.5559}}</ref>
 
==See also==