Calculation of three-dimensional turbulent boundary-layer flows on a network of different-power computers
Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 38 (1998) no. 3, pp. 510-519
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S. V. Peigin; S. V. Timchenko. Calculation of three-dimensional turbulent boundary-layer flows on a network of different-power computers. Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 38 (1998) no. 3, pp. 510-519. http://geodesic.mathdoc.fr/item/ZVMMF_1998_38_3_a14/

[1] Agarwal R. K., “Parallel computers and large problem in industry”, Comput. Methods in Appl. Sci., Elsevier, Amsterdam, 1992, 1–11

[2] Chien Y. P., Carpenter F., Ecer A., Akay H. U., “Environment requirement for dynamic load balancing in parallel CFD computation”, Proc. Parallel CFD'94, Elsevier, Amsterdam, 1995, 375–384

[3] Peigin S. V., Timchenko S. V., Chetverushkin B. N., Churbanova N. V., “Modelirovanie techenii v prostranstvennom vyazkom udarnom sloe na mnogoprotsessornykh vychislitelnykh sistemakh s raspredelennoi pamyatyu”, Matem. modelirovanie, 5:7 (1993), 41–48 | MR

[4] Peigin S. V., Kazakov V. Yu., Timchenko S. V., “Application multiprocessor transputer system for numerical simulation of 3D nonequilibrium hypersonic viscous gas flows over complex bodies”, Proc. Parallel CFD'94, Elsevier, 1995, 367–374

[5] Cebeci T., Smith A. M. O., Analysis of turbulent boundary layers, Academie, New York, 1974 | Zbl

[6] Chen K. K., Taison N. A., “Primenenie teorii turbulentnykh pyaten Emmondsa k obtekaniyu zatuplennykh tel”, Raketnaya tekhn. i kosmonavtika, 9:5, 63–68

[7] Borodin A. I., Peigin S. V., “Prostranstvennyi tonkii vyazkii udarnyi sloi pri otsutstvii v techenii ploskostei simmetrii”, Izv. AN SSSR. Mekhan. zhidkosti i gaza, 1989, no. 2, 150–158 | Zbl

[8] Petukhov I. V., “Chislennyi raschet dvumernykh techenii v pogranichnom sloe”, Chisl. metody resheniya differents. i integr. ur-nii i kvadraturnye f-ly, Izd-vo AN SSSR, M., 1964, 304–325

[9] Hoare C. A. R., Communication sequential processes, Printice-Hall, Reading, 1985

[10] Borodin A. I., Peigin S. V., “Prostranstvennyi pogranichnyi sloi na zatuplennykh telakh s pronitsaemoi poverkhnostyu, obtekaemykh pod uglami ataki i skolzheniya”, Teplofiz. vysokikh t-r, 25:3 (1987), 509–516