Highly Accurate Numerical Methods for Incompressible 3D Fluid Flows on Parallel Architectures

Author:

Konshin Vladimir N.,Garanzha Vladimir A.

Publisher

Springer Berlin Heidelberg

Reference6 articles.

1. Garanzha, V. A., Konshin, V. N.: Highly accurate upwindP adé-Type Approximations for the Systems of the Conservations Laws. I: Application to the Incompressible Navier-Stokes Equations on a Single-Zone Structured Meshes. Computing Center RAS (1996).

2. Garanzha, V. A., Ibragimov, I. V., Konshin, I. N., Konshin, V. N., Yeremin, A. Yu.: High Order Padé-Type Approximation Methods for Incompressible 3D CFD Problems on Massively Parallel Computers. In: Parallel Computational FluidD ynamics: Implementations andRe sults Using Parallel Computers. Elsevier Science B. V., (1995) 199–205

3. Garanzha, V. A.: Nonmatching GridT echnique for Highly Accurate Control Volume Padé-type Differences (CVPD), In: Proceedings of 5 Int. Conference on Grid Generation in CFS, Starkville, USA (1996) 647–656

4. Garanzha, V. A., Kaporin, I. E., Konshin, V. N.: Reliable Flow Solver Basedon the High Order Control Volume Padé-Type Differences. In: Lecture Notes in Physics, Springer, Vol. 515, (1998) 278–283

5. Ghia, U., Ghia, K. N., Shin, S. T.: High-Re Solutions for Incompressible Flow Using the Navier-Stokes Equations anda Multigrid Method. J. Comput. Phys. Vol. 48 (1982) 387–411

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1. FlowVision software;Parallel Computational Fluid Dynamics 2003;2004

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