APPLYING HETEROGENEOUS COMPUTING SYSTEM FOR SOLVING APPLIED PROBLEMS OF AEROGASDYNAMICS

Authors

  • Elena Yu. Kartseva Central Research Institute of Machine Building (Korolyov, Russian Federation)
  • Aleksander V. Kashkovsky Khristianovich Institute of Theoretical and AppliedMechanics (Novosibirsk, Russian Federation)
  • Aleksey O. Latsis Keldysh Institute of Applied Mathematics (Moscow, Russian Federation)
  • Aleksander V. Panasenko Central Research Institute of Machine Building (Korolyov, Russian Federation)
  • Yury P. Smolyanov Keldysh Institute of Applied Mathematics (Moscow, Russian Federation)
  • Vladimir V. Chernov Central Research Institute of Machine Building (Korolyov, Russian Federation)
  • Anton A. Shershnyov Khristianovich Institute of Theoretical and AppliedMechanics (Novosibirsk, Russian Federation)

DOI:

https://doi.org/10.14529/cmse140202

Keywords:

heterogeneous computing system, GPGPU, direct numerical simulation, supersonic free shear layer

Abstract

Using graphics accelerators for solving applied problems is emphasized. This paper shows usability of heterogeneous computing system consisting of central processing units and graphics processing units.

Author Biographies

Elena Yu. Kartseva, Central Research Institute of Machine Building (Korolyov, Russian Federation)

инженер  отдела

Aleksander V. Kashkovsky, Khristianovich Institute of Theoretical and AppliedMechanics (Novosibirsk, Russian Federation)

к.т.н., научный сотрудник

Aleksey O. Latsis, Keldysh Institute of Applied Mathematics (Moscow, Russian Federation)

д.ф.-м.н, заведующий сектором нетрадиционных суперкомпьютерных  архитектур

Aleksander V. Panasenko, Central Research Institute of Machine Building (Korolyov, Russian Federation)

к.т.н., с.н.с., начальник отдела

Yury P. Smolyanov, Keldysh Institute of Applied Mathematics (Moscow, Russian Federation)

к.ф.-м.н.,  начальник  отдела  вычислительных  систем и локальных  сетей

Vladimir V. Chernov, Central Research Institute of Machine Building (Korolyov, Russian Federation)

ведущий  инженер  отдела

Anton A. Shershnyov, Khristianovich Institute of Theoretical and AppliedMechanics (Novosibirsk, Russian Federation)

к.ф.-м.н., младший научный сотрудник

References

Сайт компании NVIDIA. URL: http://www.nvidia.com (дата обращения: 05.02.2014).

Barone, M.F. Validation case study: Prediction of compressible turbulent mixing layer growth rate. / M.F. Barone, W.L. Oberkampf, F.G. Blottner // AIAA Journal. — 2006. — Vol. 44, No. 7. — P. 1488–1497.

Samimy, M. Compressible mixing layer with and without particles. — Technical Report MEMS-92-101. — Ohio State University, 1992. / M. Samimy, G.S. Elliott, D.D. Glawe, M.F. Reeder, S.A. Arnette.

Brown, G.L. On density effects and large structure in turbulent mixing layers / G.L. Brown, A. Roshko // Journal of Fluid Mechanics. — 1974. — Vol. 64, No. 4. — P. 775–816.

Pantano, C. Study of Compressibility Effects in the High-Speed Turbulent Shear Layer Using Direct Simulation / C. Pantano, S.A Sarkar // Journal of Fluid Mechanics. — 2002. — Vol. 451. — P. 329–371.

Published

2014-06-25

Issue

Section

Numerical Mathematics