Numerical study of thermal destruction of the "Chelyabinsk" meteorite when entering the Earths atmosphere

A mathematical model for the numerical study of thermal destruction of the "Chelyabinsk" meteorite when entering the Earths atmosphere is presented in the article. The study was conducted in the framework of an integrated approach, including the calculation of the meteorite trajectory asso...

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Main Authors: V. S. Finchenko, A. A. Ivankov
Format: Article
Language:Russian
Published: Institute of Computer Science 2013-12-01
Series:Компьютерные исследования и моделирование
Subjects:
Online Access:http://crm.ics.org.ru/uploads/crmissues/crm_2013_6/13605.pdf
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author V. S. Finchenko
A. A. Ivankov
author_facet V. S. Finchenko
A. A. Ivankov
author_sort V. S. Finchenko
collection DOAJ
description A mathematical model for the numerical study of thermal destruction of the "Chelyabinsk" meteorite when entering the Earths atmosphere is presented in the article. The study was conducted in the framework of an integrated approach, including the calculation of the meteorite trajectory associated with the physical processes connected with the meteorite motion. Together with the trajectory the flow field and radiation-convective heattransfer were determined as well as warming and destruction of the meteorite under the influence of the calculated heat load. An integrated approach allows to determine the trajectories of space objects more precisely, predict the area of their fall and destruction.
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spelling doaj.art-6b6171ffc6e042e4a26e3dcc692a108f2022-12-21T22:44:20ZrusInstitute of Computer ScienceКомпьютерные исследования и моделирование2076-76332077-68532013-12-015694195610.20537/2076-7633-2013-5-6-941-9562096Numerical study of thermal destruction of the "Chelyabinsk" meteorite when entering the Earths atmosphereV. S. FinchenkoA. A. IvankovA mathematical model for the numerical study of thermal destruction of the "Chelyabinsk" meteorite when entering the Earths atmosphere is presented in the article. The study was conducted in the framework of an integrated approach, including the calculation of the meteorite trajectory associated with the physical processes connected with the meteorite motion. Together with the trajectory the flow field and radiation-convective heattransfer were determined as well as warming and destruction of the meteorite under the influence of the calculated heat load. An integrated approach allows to determine the trajectories of space objects more precisely, predict the area of their fall and destruction.http://crm.ics.org.ru/uploads/crmissues/crm_2013_6/13605.pdfnumerical analysisthermal destructiontrajectoryheat fluxtemperatureenthalpy effectivestrong blowing
spellingShingle V. S. Finchenko
A. A. Ivankov
Numerical study of thermal destruction of the "Chelyabinsk" meteorite when entering the Earths atmosphere
Компьютерные исследования и моделирование
numerical analysis
thermal destruction
trajectory
heat flux
temperature
enthalpy effective
strong blowing
title Numerical study of thermal destruction of the "Chelyabinsk" meteorite when entering the Earths atmosphere
title_full Numerical study of thermal destruction of the "Chelyabinsk" meteorite when entering the Earths atmosphere
title_fullStr Numerical study of thermal destruction of the "Chelyabinsk" meteorite when entering the Earths atmosphere
title_full_unstemmed Numerical study of thermal destruction of the "Chelyabinsk" meteorite when entering the Earths atmosphere
title_short Numerical study of thermal destruction of the "Chelyabinsk" meteorite when entering the Earths atmosphere
title_sort numerical study of thermal destruction of the chelyabinsk meteorite when entering the earths atmosphere
topic numerical analysis
thermal destruction
trajectory
heat flux
temperature
enthalpy effective
strong blowing
url http://crm.ics.org.ru/uploads/crmissues/crm_2013_6/13605.pdf
work_keys_str_mv AT vsfinchenko numericalstudyofthermaldestructionofthechelyabinskmeteoritewhenenteringtheearthsatmosphere
AT aaivankov numericalstudyofthermaldestructionofthechelyabinskmeteoritewhenenteringtheearthsatmosphere