Calculation of radiation in shockwave layer of a space vehicle taking into account details of photon spectrum

Calculations of radiation transport in the shockwave layer of a descent space vehicle cause essential difficulties due to complex multi-resonance dependence of the absorption macroscopic cross sections from the photon energy. The convergence of two approximate spectrum averaging methods to the resul...

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Main Authors: Elena Nikolaevna Aristova, Gleb Olegovich Astafurov, Aleksandr V. Shilkov
Format: Article
Language:Russian
Published: Institute of Computer Science 2017-08-01
Series:Компьютерные исследования и моделирование
Subjects:
Online Access:http://crm.ics.org.ru/uploads/crmissues/crm_2017_4/2017_04_04.pdf
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spelling doaj-72d89a86bfef4ea88d1da3b971a209a02020-11-25T01:13:34ZrusInstitute of Computer ScienceКомпьютерные исследования и моделирование2076-76332077-68532017-08-019457959410.20537/2076-7633-2017-9-4-579-5942594Calculation of radiation in shockwave layer of a space vehicle taking into account details of photon spectrumElena Nikolaevna AristovaGleb Olegovich AstafurovAleksandr V. ShilkovCalculations of radiation transport in the shockwave layer of a descent space vehicle cause essential difficulties due to complex multi-resonance dependence of the absorption macroscopic cross sections from the photon energy. The convergence of two approximate spectrum averaging methods to the results of exact pointwise spectrum calculations is investigated. The first one is the well known multigroup method, the second one is the Lebesgue averaging method belonging to methods of the reduction of calculation points by means of aggregation of spectral points which are characterized by equal absorption strength. It is shown that convergence of the Lebesgue averaging method is significantly faster than the multigroup approach as the number of groups is increased. The only 100-150 Lebesgue groups are required to achieve the accuracy of pointwise calculations even in the shock layer at upper atmosphere with sharp absorption lines. At the same time the number of calculations is reduced by more than four order. Series of calculations of the radiation distribution function in 2D shock layer around a sphere and a blunt cone were performed using the local flat layer approximation and the Lebesgue averaging method. It is shown that the shock wave radiation becomes more significant both in value of the energy flux incident on the body surface and in the rate of energy exchange with the gas-dynamic flow in the case of increasing of the vehicles size.http://crm.ics.org.ru/uploads/crmissues/crm_2017_4/2017_04_04.pdfradiation energy transportshockwavemultigroup approachLebesgue averaging method'line-by-line' methodlocal plane layer approach
collection DOAJ
language Russian
format Article
sources DOAJ
author Elena Nikolaevna Aristova
Gleb Olegovich Astafurov
Aleksandr V. Shilkov
spellingShingle Elena Nikolaevna Aristova
Gleb Olegovich Astafurov
Aleksandr V. Shilkov
Calculation of radiation in shockwave layer of a space vehicle taking into account details of photon spectrum
Компьютерные исследования и моделирование
radiation energy transport
shockwave
multigroup approach
Lebesgue averaging method
'line-by-line' method
local plane layer approach
author_facet Elena Nikolaevna Aristova
Gleb Olegovich Astafurov
Aleksandr V. Shilkov
author_sort Elena Nikolaevna Aristova
title Calculation of radiation in shockwave layer of a space vehicle taking into account details of photon spectrum
title_short Calculation of radiation in shockwave layer of a space vehicle taking into account details of photon spectrum
title_full Calculation of radiation in shockwave layer of a space vehicle taking into account details of photon spectrum
title_fullStr Calculation of radiation in shockwave layer of a space vehicle taking into account details of photon spectrum
title_full_unstemmed Calculation of radiation in shockwave layer of a space vehicle taking into account details of photon spectrum
title_sort calculation of radiation in shockwave layer of a space vehicle taking into account details of photon spectrum
publisher Institute of Computer Science
series Компьютерные исследования и моделирование
issn 2076-7633
2077-6853
publishDate 2017-08-01
description Calculations of radiation transport in the shockwave layer of a descent space vehicle cause essential difficulties due to complex multi-resonance dependence of the absorption macroscopic cross sections from the photon energy. The convergence of two approximate spectrum averaging methods to the results of exact pointwise spectrum calculations is investigated. The first one is the well known multigroup method, the second one is the Lebesgue averaging method belonging to methods of the reduction of calculation points by means of aggregation of spectral points which are characterized by equal absorption strength. It is shown that convergence of the Lebesgue averaging method is significantly faster than the multigroup approach as the number of groups is increased. The only 100-150 Lebesgue groups are required to achieve the accuracy of pointwise calculations even in the shock layer at upper atmosphere with sharp absorption lines. At the same time the number of calculations is reduced by more than four order. Series of calculations of the radiation distribution function in 2D shock layer around a sphere and a blunt cone were performed using the local flat layer approximation and the Lebesgue averaging method. It is shown that the shock wave radiation becomes more significant both in value of the energy flux incident on the body surface and in the rate of energy exchange with the gas-dynamic flow in the case of increasing of the vehicles size.
topic radiation energy transport
shockwave
multigroup approach
Lebesgue averaging method
'line-by-line' method
local plane layer approach
url http://crm.ics.org.ru/uploads/crmissues/crm_2017_4/2017_04_04.pdf
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