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A criterion for detonation initiation in gas mixtures. / Bratov, V. A.; Isakov, L. M.; Petrov, Y. V.

в: Doklady Physics, Том 53, № 10, 01.10.2008, стр. 507-509.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

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Bratov, V. A. ; Isakov, L. M. ; Petrov, Y. V. / A criterion for detonation initiation in gas mixtures. в: Doklady Physics. 2008 ; Том 53, № 10. стр. 507-509.

BibTeX

@article{2b4309bded30459583b72c994ed2656a,
title = "A criterion for detonation initiation in gas mixtures",
abstract = "The measurement of the minimum critical energy that should be released inside a volume to be demolished to initiate the detonation is presented. A criterion based on the concept of the incubation time for the process of direct detonation initiation is proposed. The incubation time of the detonation process is directly connected with the process preceding the attainment of the steady regime for the detonation-wave propagation, including the chemical process. The criterion introduced to estimate the detonation conditions in the experiments is introduced. The detonation in the stoichiometric hydrogen-oxygen mixture was initiated by electric discharges of different frequencies and amplitudes up to detonation wave had been formed. The experimental conditions of the results are well consistent with the values of the critical energy obtained. The calculation results exploiting the new detonation criterion are compared with the experimental data.",
keywords = "FRACTURE, ENERGY",
author = "Bratov, {V. A.} and Isakov, {L. M.} and Petrov, {Y. V.}",
year = "2008",
month = oct,
day = "1",
doi = "10.1134/S1028335808100017",
language = "English",
volume = "53",
pages = "507--509",
journal = "Doklady Physics",
issn = "1028-3358",
publisher = "МАИК {"}Наука/Интерпериодика{"}",
number = "10",

}

RIS

TY - JOUR

T1 - A criterion for detonation initiation in gas mixtures

AU - Bratov, V. A.

AU - Isakov, L. M.

AU - Petrov, Y. V.

PY - 2008/10/1

Y1 - 2008/10/1

N2 - The measurement of the minimum critical energy that should be released inside a volume to be demolished to initiate the detonation is presented. A criterion based on the concept of the incubation time for the process of direct detonation initiation is proposed. The incubation time of the detonation process is directly connected with the process preceding the attainment of the steady regime for the detonation-wave propagation, including the chemical process. The criterion introduced to estimate the detonation conditions in the experiments is introduced. The detonation in the stoichiometric hydrogen-oxygen mixture was initiated by electric discharges of different frequencies and amplitudes up to detonation wave had been formed. The experimental conditions of the results are well consistent with the values of the critical energy obtained. The calculation results exploiting the new detonation criterion are compared with the experimental data.

AB - The measurement of the minimum critical energy that should be released inside a volume to be demolished to initiate the detonation is presented. A criterion based on the concept of the incubation time for the process of direct detonation initiation is proposed. The incubation time of the detonation process is directly connected with the process preceding the attainment of the steady regime for the detonation-wave propagation, including the chemical process. The criterion introduced to estimate the detonation conditions in the experiments is introduced. The detonation in the stoichiometric hydrogen-oxygen mixture was initiated by electric discharges of different frequencies and amplitudes up to detonation wave had been formed. The experimental conditions of the results are well consistent with the values of the critical energy obtained. The calculation results exploiting the new detonation criterion are compared with the experimental data.

KW - FRACTURE

KW - ENERGY

UR - http://www.scopus.com/inward/record.url?scp=54249128254&partnerID=8YFLogxK

U2 - 10.1134/S1028335808100017

DO - 10.1134/S1028335808100017

M3 - Article

AN - SCOPUS:54249128254

VL - 53

SP - 507

EP - 509

JO - Doklady Physics

JF - Doklady Physics

SN - 1028-3358

IS - 10

ER -

ID: 35931336