INTERNATIONAL JOURNAL OF GEOMAGNETISM AND AERONOMY VOL. 5, GI2002, doi:10.1029/2004GI000064, 2004

References

Adushkin, V. V., S. I. Kozlov, and A. V. Petrov, Eds. (2000),, Ecological Problems and Influence of the Rocket-Space Equipment on the Environment (in Russian), 640 pp., Ankil, Moscow.

Afraimovich, E. L., E. A. Kosogorov, N. P. Perevalova, and A. V. Plotnikov (2001), The use of GPS arrays in detecting shock-acoustic waves generated during rocket launchings, J. Atmos. Sol. Terr. Phys., 63, 1941.

Andreeva, E. S., and E. A. Kosogorov, et al. (2001), Radiotomographic registration of the ionosphere disturbances from ground explosions, Space Res. (in Russian), 39, (1), 13.

Arendt, P. R. (1971), Ionospheric undulations following Apollo 4 launching, Nature, 231, 438.

Calais, E., and J. B. Minster (1998), GPS, earthquakes, the ionosphere, and the space shuttle, Phys. Earth Planet. Inter., 105, 167.

Durran, D. (1999),, Numerical Methods for Wave Equations in Geophysical Fluid Dynamics, 465 pp., Springer-Verlag, New York.

Francis, S. H. (1975), Global propagation of atmospheric gravity waves: A review, J. Atmos. Terr. Phys., 37, 1011.

Gavrilov, N. M. (1985), Propagation of internal gravity waves in stratified atmosphere, Phys. Atmos. Ocean (in Russian), 21, 921.

Jacobson, A. R., and R. C. Carlos (1994), Observations of acoustic-gravity waves in the thermosphere following space shuttle ascents, J. Atmos. Terr. Phys., 56, (4), 525.

Karlov, V. D., S. I. Kozlov, and G. N. Tkachev (1980), Large-scale ionosphere disturbances generated at rocket flight with operating engine (a review), Space Res. (in Russian), 18, (2), 266.

Kunitsyn, V., and E. Tereshchenko (2003),, Ionospheric Tomography, 272 pp., Springer-Verlag, New York.

Landau, L. D., and V. M. Lifshits (1988),, Fluid Dynamics (in Russian), 733 pp., Nauka, Moscow.

Nagorsky, P. M. (1998), Modification of the ionosphere F  region by a powerful pulse source of waves in the neutral gas, Dr. S. thesis (in Russian), Tomsk State Univ., Tomsk.

Noble, S. T. (1990), A large-amplitude traveling ionospheric disturbance exited by the space shuttle during launch, J. Geophys. Res., 95, 19,037.

Oran, E. S., and J. P. Boris (1987),, Numerical Simulation of Reactive Flow, Elsevier Sci., New York.

Rudenko, O. V., and S. I. Soluyan (1975),, Theoretical Fundamentals of Nonlinear Acoustics (in Russian), 1423 pp., Nauka, Moscow.

Sedunov, Yu. S. (1991),, Atmosphere: Handbook (in Russian), Gidrometeoizdat, St. Petersburg.

Tolstoy, I., and S. I. Soluyan, et al. (1970), Long-period sound waves in the thermosphere from Apollo launches, J. Geophys. Res., 75, 5621.

Zhang, S. D., and F. Yi (2002), A numerical study of propagation characteristics of gravity wave packets propagating in a dissipative atmosphere, J. Geophys. Res., 107, (D14), 4222, doi:10.1029/2001JD000864. [HTML] [PDF]



AGU

Citation: Ahmadov, R. R., and V. E. Kunitsyn (2004), Simulation of generation and propagation of acoustic gravity waves in the atmosphere during a rocket flight, Int. J. Geomagn. Aeron., 5, GI2002, doi:10.1029/2004GI000064.

Copyright 2004 by the American Geophysical Union

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