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This paper presents geometric design procedures to design the roller drives which have cylindrical meshing elements.
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A temperature-dependent dynamic explicit modeling is applied, considering adaptive meshing, element deletion, and mass scaling techniques.
The opening of virtual stores in Second Life raises interesting questions as virtual worlds mesh elements of both e-commerce and bricks-and-mortar retailing.
A single work might mesh elements from sci-fi, folk tales, personal memories and human history, as in the unsettling Summer Days in Keijo.
Experimental results show that these two methods are successful in improving the worst quality mesh elements.
With these types of meshes, elements can deform in unphysical ways and the mesh can tangle.
We incorporate nonlinear surface tension forces with a formulation based on minimizing discrete surface area, and preserve the quality of triangular mesh elements through local remeshing operations.
Such a meshing algorithm is generally described through a set of rules guiding the refinement of mesh elements.
This specifically focuses on triangulated surface meshes, meaning the mesh elements are triangles embedded in three-dimensional space.
The numerical robustness is further illustrated by applying the method to highly deformed mesh elements.
The approach is formulated for the most general case where only the coordinates defining the mesh elements are known at discrete locations in time, and arbitrary geometrically high-order curved mesh element deformation is considered.
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