


default search action
Journal of Computational Physics, Volume 254
Volume 254, December 2013
- Seongwon Kang, Heinz Pitsch
, Nahmkeon Hur:
On a robust ALE method with discrete primary and secondary conservation. 1-7 - Thomas Toulorge, Christophe Geuzaine, Jean-François Remacle
, Jonathan Lambrechts
:
Robust untangling of curvilinear meshes. 8-26 - Joshua A. Anderson, Eric Jankowski, Thomas L. Grubb, Michael Engel
, Sharon C. Glotzer:
Massively parallel Monte Carlo for many-particle simulations on GPUs. 27-38 - Na Zhang, Zhaoqin Huang, Jun Yao
:
Locally conservative Galerkin and finite volume methods for two-phase flow in porous media. 39-51 - D. Stevens, Henry Power, C. Y. Meng, D. Howard, K. Andrew Cliffe:
An alternative local collocation strategy for high-convergence meshless PDE solutions, using radial basis functions. 52-75 - Jun Zhu, Jianxian Qiu:
Hermite WENO schemes for Hamilton-Jacobi equations on unstructured meshes. 76-92 - Anton Daitche:
Advection of inertial particles in the presence of the history force: Higher order numerical schemes. 93-106 - R. Elliot English, Linhai Qiu, Yue Yu, Ronald Fedkiw:
An adaptive discretization of incompressible flow using a multitude of moving Cartesian grids. 107-154 - C. S. Wu
, Der-Liang Young, Chia-Lin Chiu
:
Simulation of wave-structure interaction by hybrid Cartesian/immersed boundary and arbitrary Lagrangian-Eulerian finite-element method. 155-183 - Piotr K. Smolarkiewicz
, Joanna Szmelter, Andrzej A. Wyszogrodzki
:
An unstructured-mesh atmospheric model for nonhydrostatic dynamics. 184-199 - Kameswararao Anupindi
, Yann Delorme, Dinesh A. Shetty, Steven H. Frankel:
A novel multiblock immersed boundary method for large eddy simulation of complex arterial hemodynamics. 200-218

manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.