Jets acceleration in a~variety of matter source modelling ways
Matematičeskoe modelirovanie, Tome 23 (2011) no. 10, pp. 65-81.

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MHD-model of astrophysical jet outflow from the vicinity of compect object surrounded by thin accretion disk and encloused into the galactic plasma cloud is considered. Numerical algorythm based on the division by physical processes and including finite difference scheme for MHD system of equations in axissymmetric two-dimensional case is constructed. Triangular unstructured staggered grid is used. Results of modelling show the formation of accelerating channel in the shape of Laval nozzle. Results are in agreement with observational data. Calculations are made on KIAM K-100 cluster.
Keywords: magnetohydrodynamics, astrophysical jets, plasma acceleration.
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M. P. Galanin; V. V. Lukin; V. M. Chechetkin. Jets acceleration in a~variety of matter source modelling ways. Matematičeskoe modelirovanie, Tome 23 (2011) no. 10, pp. 65-81. http://geodesic.mathdoc.fr/item/MM_2011_23_10_a4/

[1] Cherepaschuk A. M., “Dannye fotometricheskikh nablyudenii SS433 i ikh interpretatsiya”, Itogi nauki i tekhniki. Ser. Astronomiya, 38, 1988, 60–120

[2] Macchetto F. D., NASA's Hubble Space Telescope Yields Clear View of Optical Jet in Galaxy M87, HST News Release STSCI-PRC92-07, 1992

[3] Galanin M. P., Toropin Yu. M., Chechetkin V. M., “Radiatsionnoe uskorenie portsii veschestva v akkretsionnykh voronkakh okolo astrofizicheskikh ob'ektov”, Astronomicheskii zhurnal, 76:2 (1999), 143–160

[4] Beskin V. S., Osesimmetrichnye statsionarnye techeniya v astrofizike, Editorial URSS, M., 2006, 384 pp.

[5] Krasnopolsky R., Li Zhi-Yun, Blandford R., “Magnetocentrifugal Launching Of Jets From Accretion Disks. I: Cold Axisymmetric Flows”, The Astrophysical Journal, 526 (1999), 631–542 | DOI

[6] Komissarov S., Vlahakis N., Konigl A., Barkov M., “Magnetic acceleration of ultrarelativistic jets in gamma-ray burst sources”, MNRAS, 394 (2008), 1182–1212 | DOI

[7] Savel'ev V. V., Toropin Y. M., Chechetkin V. M., “A Possible Mechanism for the Formation of Molecular Flows”, Astronomy Reports, 40 (1996), 494–508

[8] Ouyed R., Pudritz R., “Numerical Simulations Of Astrophysical Jets From Keplerian Disks. II: Episodic Outlows”, The Astrophysical Journal, 484 (1997), 794–809 | DOI

[9] Krivosheyev Yu. M., Bisnovatyi-Kogan G. S., Cherepashchuk A. M., Postnovc K. A., “Monte Carlo simulations of the broad-band X-ray continuum of SS433”, MNRAS, 394 (2009), 1674–1684 | DOI

[10] Ustyugova G. V., Koldoba A. V., Romanova M. M., Chechetkin V. M., Lovelace R. V. E., “Magnetohydrodynamic Simulations Of Outflows From Accretion Disks”, The Astrophysical Journal, 439 (1995), L39–L42 | DOI

[11] Romanova M. M., Ustyugova G. V., Koldoba A. V., Lovelace R. V. E., “Launching of Conical Winds and Axial Jets from the Disk-Magnetosphere Boundary: Axisymmetric and 3D Simulations”, MNRAS, 399:4 (2009), 1802–1828 | DOI

[12] Galanin M. P., Lukin V. V., Chechetkin V. M., Matematicheskoe modelirovanie struinykh vybrosov veschestva v okrestnosti akkretsionnogo diska, prepr. No 54, IPM im. M. V. Keldysha RAN, M., 2008, 36 pp.

[13] Galanin M. P., Lukin V. V., Chechetkin V. M., “Matematicheskoe modelirovanie struinykh vybrosov v okrestnosti kompaktnykh ob'ektov”, Astronomicheskii zhurnal, 86:4 (2009), 331–344 | MR

[14] Galanin M. P., Lukin V. V., Raznostnaya skhema dlya resheniya dvumernykh zadach idealnoi MGD na nestrukturirovannykh setkakh, No 50, IPM im. M. V. Keldysha RAN, M., 2007, 29 pp.

[15] Samarskii A. A., Popov Yu. P., Raznostnye metody resheniya zadach gazovoi dinamiki, Editorial URSS, M., 2004, 424 pp.

[16] Yanenko N. N., Metod drobnykh shagov resheniya mnogomernykh zadach matematicheskoi fiziki, Nauka, Novosibirsk, 1967, 196 pp.

[17] De Sterck H., “Multi-Dimensional Upwind Constrained Transport on Unstructured Grids for Shallow Water Magnetohydrodynamics”, AIAA Computational Fluid Dynamics Paper, 2623, 2001, 13 pp.

[18] Pogorelov N. V., Semenov A. Yu., “Solar wind interaction with the magnetized interstellar medium”, Astron. Astrophys., 321 (1997), 330–337

[19] Kulikovskii A. G., Pogorelov N. V., Semenov A. Yu., Matematicheskie voprosy chislennogo resheniya giperbolicheskikh sistem uravnenii, Fizmatlit, M., 2001, 608 pp. | MR

[20] Tomimatsu A., Takahashi M., “Relativistic Acceleration of Magnetically Driven Jets”, The Astrophysical Journal, 592 (2003), 321–331 | DOI

[21] Chandra R., Dagum L., Kohr D., Maydan D., McDonald J., Menon R., Parallel Programming in OpenMP, Morgan Kaufmann Publishers, San Francisco, 2001, 248 pp. | Zbl

[22] Savel'ev V. V., Toropin Yu. M., Chechetkin V. M., “Simulations of a supersonic accretion onto magnetized disks: properties of developing outflows”, Low Mass Star Formation from Infall to Outflow, Poster proceedings of IAU Symp., 182, 1997, 254 | MR

[23] Galanin M. P., Lukin V. V., Chechetkin V. M., K postanovke zadachi modelirovaniya astrofizicheskikh struinykh vybrosov, prepr. No 36, IPM im. M. V. Keldysha RAN, M., 2009, 30 pp.