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contributor authorحمید محمدیونen
contributor authorعلی کیانی فرen
contributor authorhamid mohammadiunfa
contributor authorAli Kianifarfa
date accessioned2020-06-06T14:36:06Z
date available2020-06-06T14:36:06Z
date issued2011
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3403544?locale-attribute=en&show=full
description abstractPresently, there is little information, concerning the heat shield systems, and this

information is not completely reliable to use in so many cases. For example, the precise

calculation can not be done for various materials. In addition, the real scale test has two

disadvantages: high cost and low flexibility, and for each case, we must perform a new test.

Hence, using a numerical modeling program that calculates the surface recession rate and

interior temperature distribution is necessary. Also, the numerical solution of governing

equation for non-charring material ablation is presented in order to anticipate the recession

rate and the heat response of non-charring heat shields. The governing equation is

nonlinear and the Newton-Rafson method along with TDMA algorithm(Thomas algorithm)

is used to solve this nonlinear equation system. Using Newton- Rafson method for solving

the governing equation is one of the advantages of the solving method because this method

is simple and it can be easily generalized to more difficult problems. The obtained results

are compared with reliable sources in order to examine the accuracy of compiling code.
en
languageEnglish
titleNumerical Modeling of Non-Charring Material Ablation with Considering Chemical Reaction Effects, Mass Transfer and Surface Heat Transferen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsNon-charring material ablationen
subject keywordsRecession rateen
subject keywordsInterior temperatureen
subject keywordsNewton-

Raphson method
en
subject keywordsThomas algorithmen
journal titleEuropean Journal of Scientific Researchfa
pages435-447
journal volume54
journal issue3
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1022959.html
identifier articleid1022959


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