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JOURNALS // Prikladnaya Mekhanika i Tekhnicheskaya Fizika // Archive

Prikl. Mekh. Tekh. Fiz., 2013 Volume 54, Issue 5, Pages 3–17 (Mi pmtf1133)

This article is cited in 1 paper

Structure of the disturbed region of the atmosphere after the nuclear explosion in Hiroshima

M. D. Shcherbin, K. V. Pavlyukov, A. A. Salo, S. F. Pertsev, A. V. Rikunov

12th Central Scientific Research Institute, Ministry of Defense of the Russian Federation, Sergiev Posad, 141307, Russia

Abstract: An attempt is undertaken to describe the development of the disturbed region of the atmosphere caused by the nuclear explosion over Hiroshima on August 6, 1945. Numerical simulation of the phenomenon is performed using the dynamic equations for a nonconducting inviscid gas taking into account the combustion of urban buildings, phase changes of water, electrification of ice particles, and removal of soot particles. The results of the numerical calculation of the development of the disturbed region indicate heavy rainfall, the formation of a storm cloud with lightning discharges, removal of soot particles, and the formation of vertical vortices. The temporal sequence of these meteorological phenomena is consistent with the data of observations. Because of the assumptions and approximations used in solving the problem, the results are of qualitative nature. Refinement of the results can be obtained by a more detailed study of the approximate initial and boundary conditions of the problem.

Keywords: atmosphere, convection, explosion, rain, tornado, electric field.

UDC: 537.523+532.51

Received: 17.08.2012
Revised: 12.03.2013


 English version:
Journal of Applied Mechanics and Technical Physics, 2013, 54:5, 689–701

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