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Pregled bibliografske jedinice broj: 187866

Numerical modelling of self-ignition of energetic materials


Sućeska, Muhamed; Matečić Mušanić, Sanja
Numerical modelling of self-ignition of energetic materials // Central European journal of energetic materials, 1 (2004), 1; 23-41 (podatak o recenziji nije dostupan, članak, znanstveni)


CROSBI ID: 187866 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Numerical modelling of self-ignition of energetic materials

Autori
Sućeska, Muhamed ; Matečić Mušanić, Sanja

Izvornik
Central European journal of energetic materials (1733-7178) 1 (2004), 1; 23-41

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
energetic materials; self-ignition; thermal explosion; numerical modeling

Sažetak
Thermal decomposition of energetic materials is accompanied by generation of heat, and under certain conditions may lead to the well-known phenomenon of the self-ignition (or thermal explosion). Therefore, it is of great concern of explosive community to predict whether or not a specimen of energetic material will ignite or not under given conditions (defined primarily by a specimen mass and shape, surrounding temperature, etc.). In order to describe the reactive heat conduction phenomena in an infinite slab, cylindrical, and spherical geometry of an explosive material, an own computer program, based on the thermal explosion theory and the finite difference method, was developed. The program is tested by the comparison of calculated times to ignition for some standard high explosives with times to ignition determined experimentally, as well as with times to ignitions calculated by some other authors. The results of calculations are also compared with the results of calculation according to an analytical solution of the heat balance equation derived by Frank-Kamenetskii. It was found out that not only values of the activation energy and pre-exponential factor, but also the kinetic model of thermal decomposition used in the calculation, have a crucial influence on the results of calculation. It was also shown that the Frank-Kamenetskii equation gives considerably lover values of the times to ignition, and higher values of the critical temperatures for explosives studied.

Izvorni jezik
Engleski

Znanstvena područja
Kemijsko inženjerstvo



POVEZANOST RADA


Projekti:
0192007

Ustanove:
Brodarski institut d.o.o.


Citiraj ovu publikaciju:

Sućeska, Muhamed; Matečić Mušanić, Sanja
Numerical modelling of self-ignition of energetic materials // Central European journal of energetic materials, 1 (2004), 1; 23-41 (podatak o recenziji nije dostupan, članak, znanstveni)
Sućeska, M. & Matečić Mušanić, S. (2004) Numerical modelling of self-ignition of energetic materials. Central European journal of energetic materials, 1 (1), 23-41.
@article{article, author = {Su\'{c}eska, Muhamed and Mate\v{c}i\'{c} Mu\v{s}ani\'{c}, Sanja}, year = {2004}, pages = {23-41}, keywords = {energetic materials, self-ignition, thermal explosion, numerical modeling}, journal = {Central European journal of energetic materials}, volume = {1}, number = {1}, issn = {1733-7178}, title = {Numerical modelling of self-ignition of energetic materials}, keyword = {energetic materials, self-ignition, thermal explosion, numerical modeling} }
@article{article, author = {Su\'{c}eska, Muhamed and Mate\v{c}i\'{c} Mu\v{s}ani\'{c}, Sanja}, year = {2004}, pages = {23-41}, keywords = {energetic materials, self-ignition, thermal explosion, numerical modeling}, journal = {Central European journal of energetic materials}, volume = {1}, number = {1}, issn = {1733-7178}, title = {Numerical modelling of self-ignition of energetic materials}, keyword = {energetic materials, self-ignition, thermal explosion, numerical modeling} }




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