Title of article :
Behaviour of isoparametric quadrilateral family of Lagrangian fluid finite elements
Author/Authors :
S. Gopalakrishnan، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2002
Pages :
31
From page :
731
To page :
761
Abstract :
This paper presents the formulation of both the consistent and inconsistent four-, eight- and nine-noded isoparametric quadrilateral uid nite elements that are based on Lagrangian frame of reference. The mesh locking phenomenon due to simultaneous enforcement of twin constraints, namely the incompressibility and irrotationality constraints, is studied in detail. The study shows that the characteristic of the locked uid elements is that it always generates numerous spurious acoustic (volume change) modes upon the enforcement of rotational constraints. That is, the rotational constraints change the character of certain volume change modes. The study further reinforces the necessity of rotational constraints in not only identifying the spurious pressure modes, but also in reducing the computational e ort for determining the eigenvalues and eigenvectors. It is found that all fully integrated inconsistent models exhibit locking behaviour. However, the inconsistent eight- and nine-noded elements, integrated with full integration of volumetric sti ness and one point integration of the rotational sti ness matrices, gives excellent performance, although they do not pass the inf–sup test. The four- and nine-noded consistent models are found to give locking free performance while their eight-noded counterpart exhibited locking behaviour. The study shows that only consistent nine-noded element models pass the inf–sup test. The utility of these elements in coupled uid–structure interaction problem is also demonstrated
Keywords :
nite element method , inf–sup test , uid–structure interaction , Incompressibility , irrotationality , and consistency , mesh locking
Journal title :
International Journal for Numerical Methods in Engineering
Serial Year :
2002
Journal title :
International Journal for Numerical Methods in Engineering
Record number :
424600
Link To Document :
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