18.08.2013 Views

Vega FEM Library (v1.1) User's Manual - University of Southern ...

Vega FEM Library (v1.1) User's Manual - University of Southern ...

Vega FEM Library (v1.1) User's Manual - University of Southern ...

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

References<br />

[Bar07] Jernej Barbič. Real-time Reduced Large-Deformation Models and Distributed Contact for Computer<br />

Graphics and Haptics. PhD thesis, Carnegie Mellon <strong>University</strong>, August 2007.<br />

[Bar12] Jernej Barbič. Exact Corotational Linear <strong>FEM</strong> Stiffness Matrix. Technical report, <strong>University</strong> <strong>of</strong><br />

<strong>Southern</strong> California, 2012.<br />

[Bow09] Allan Bower. Applied Mechanics <strong>of</strong> Solids. CRC Press, 2009.<br />

[BW98] David Baraff and Andrew P. Witkin. Large Steps in Cloth Simulation. In Proc. <strong>of</strong> ACM SIGGRAPH<br />

98, pages 43–54, July 1998.<br />

[BW08] Javier Bonet and Richard D. Wood. Nonlinear Continuum Mechanics for Finite Element Analysis,<br />

2nd Ed. Cambridge <strong>University</strong> Press, 2008.<br />

[CPSS10] Isaac Chao, Ulrich Pinkall, Patrick Sanan, and Peter Schröder. A Simple Geometric Model for<br />

Elastic Deformations. ACM Transactions on Graphics, 29(3):38:1–38:6, 2010.<br />

[Han11] Hang Si. TetGen: A Quality Tetrahedral Mesh Generator and a 3D Delaunay Triangulator, 2011.<br />

http://tetgen.org/.<br />

[ITF04] G. Irving, J. Teran, and R. Fedkiw. Invertible Finite Elements for Robust Simulation <strong>of</strong> Large<br />

Deformation. In Symp. on Computer Animation (SCA), pages 131–140, 2004.<br />

[Kli08] Matthew Klingner. Improving Tetrahedral Meshes. PhD thesis, Department <strong>of</strong> Electrical Engineering<br />

and Computer Sciences, <strong>University</strong> <strong>of</strong> California, Berkeley, 2008.<br />

[KS09] Matthew Klingner and Jonathan Richard Shewchuk. Stellar: A tetrahedral mesh improvement<br />

program, 2009. http://www.cs.berkeley.edu/˜jrs/stellar/.<br />

[MG04] M. Müller and M. Gross. Interactive Virtual Materials. In Proc. <strong>of</strong> Graphics Interface 2004, pages<br />

239–246, 2004.<br />

[PAR] PARDISO: Parallel Direct Sparse Solver Interface. Pardiso project, www.pardiso-project.org and<br />

Intel MKL, s<strong>of</strong>tware.intel.com/en-us/articles/intel-mkl.<br />

[Sha90] Ahmed A. Shabana. Theory <strong>of</strong> Vibration, Volume II: Discrete and Continuous Systems. Springer–<br />

Verlag, 1990.<br />

[She94] Jonathan Richard Shewchuk. An introduction to the conjugate gradient method without the agonizing<br />

pain, 1994.<br />

[SPO] SPOOLES: SParse Object Oriented Linear Equations Solver. Boeing Phantom Works.<br />

www.netlib.org/linalg/spooles/spooles.2.2.html.<br />

[SSB12] Fun Shing Sin, Daniel Schroeder, and Jernej Barbič. <strong>Vega</strong>: Nonlinear <strong>FEM</strong> Deformable Object<br />

Simulator. Computer Graphics Forum, 2012. accepted, to appear.<br />

[TSIF05] Joseph Teran, Eftychios Sifakis, Ge<strong>of</strong>frey Irving, and Ronald Fedkiw. Robust Quasistatic Finite<br />

Elements and Flesh Simulation. In Symp. on Computer Animation (SCA), pages 181–190, 2005.<br />

[Wri02] Peter Wriggers. Computational Contact Mechanics. John Wiley & Sons, Ltd., 2002.<br />

40

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!