iMechanica - volume-averaged pressure/strains
https://imechanica.org/taxonomy/term/10203
enVolume-Averaged Nodal Projection Method for Nearly-Incompressible Elasticity Using Meshfree and Bubble Basis Functions
https://imechanica.org/node/17495
<div class="field field-name-taxonomy-vocabulary-6 field-type-taxonomy-term-reference field-label-hidden"><div class="field-items"><div class="field-item even"><a href="/taxonomy/term/76">research</a></div></div></div><div class="field field-name-taxonomy-vocabulary-8 field-type-taxonomy-term-reference field-label-hidden"><div class="field-items"><div class="field-item even"><a href="/taxonomy/term/451">meshfree methods</a></div><div class="field-item odd"><a href="/taxonomy/term/10200">nearly-incompressible elasticity</a></div><div class="field-item even"><a href="/taxonomy/term/10201">volumetric locking</a></div><div class="field-item odd"><a href="/taxonomy/term/10202">projection methods</a></div><div class="field-item even"><a href="/taxonomy/term/10203">volume-averaged pressure/strains</a></div><div class="field-item odd"><a href="/taxonomy/term/10204">bubble functions</a></div></div></div><div class="field field-name-body field-type-text-with-summary field-label-hidden"><div class="field-items"><div class="field-item even"><p><strong>Abstract</strong>
</p><p>We present a displacement-based Galerkin meshfree method for the analysis of nearly-incompressible linear elastic solids, where low-order simplicial tessellations (i.e., 3-node triangular or 4-node tetrahedral meshes) are used as a background structure for numerical integration of the weak form integrals and to get the nodal information for the computation of the meshfree basis functions. In this approach, a volume-averaged nodal projection operator is constructed to project the dilatational strain into an approximation space of equal- or lower-order than the approximation space for the displacement field resulting in a locking-free method. The stability of the method is provided via bubble-like basis functions. Because the notion of an ‘element’ or ‘cell’ is not present in the computation of the meshfree basis functions such low-order tessellations can be used regardless of the order of the approximation spaces desired. First- and second-order meshfree basis functions are chosen as a particular case in the proposed method. Numerical examples are provided in two and three dimensions to demonstrate the robustness of the method, its ability to avoid volumetric locking in the nearly-incompressible regime, and its improved performance when compared to the MINI finite element scheme on the simplicial mesh.</p>
<p><strong>Keywords</strong>: Meshfree methods, nearly-incompressible elasticity, volumetric locking, projection methods, volume-averaged pressure/strains, bubble functions.</p>
<p><a href="http://camlab.cl/alejandro/publications/volume-averaged-nodal-projection-method-for-nearly-incompressible-elasticity-using-meshfree-and-bubble-basis-functions/"><span><strong><span><span>Get the article</span></span></strong></span></a></p>
</div></div></div>Fri, 14 Nov 2014 15:06:58 +0000Alejandro Ortiz-Bernardin17495 at https://imechanica.orghttps://imechanica.org/node/17495#commentshttps://imechanica.org/crss/node/17495Error | iMechanica