Flow instabilities are among the main issues of ICF studies. Heterogeneities and defects of the material or the geometry are generally considered among the sources of instabilities which are strongly amplified in spherical geometries. According to the theory of D’yakov, some ranges of the Equation of State (EOS) also generate or amplify instabilities in shock waves, which can be considered among the origin of Richtmyer‐Meshkov instabilities. It is well known that, on the Hugoniot curve of most materials, the volume decreases versus pressure down to a minimum and then increases with ionization towards an asymptotic value. Recent results in this range of pressure allow us to investigate now the stability conditions. The first question to raise is the possibility of existence of such instabilities. We focus here on the properties of several elements (aluminium, iron, copper) in this range of pressure to try to give a first answer to this question.
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28 December 2009
SHOCK COMPRESSION OF CONDENSED MATTER 2009: Proceedings of the American Physical Society Topical Group on Shock Compression of Condensed Matter
28 June–3 July 2009
Nashville (Tennessee)
Research Article|
December 28 2009
ON THE EXISTENCE OF SHOCK INSTABILITIES AT HUGONIOT PRESSURES BEYOND THE MINIMUM VOLUME Available to Purchase
Olivier Heuzé;
Olivier Heuzé
aCEA, DAM, DIF, F‐91297 ARPAJON, FRANCE
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Jean‐Christophe Pain;
Jean‐Christophe Pain
aCEA, DAM, DIF, F‐91297 ARPAJON, FRANCE
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Olivier Heuzé
a
Jean‐Christophe Pain
a
Gwenael Salin
aCEA, DAM, DIF, F‐91297 ARPAJON, FRANCE
AIP Conf. Proc. 1195, 103–106 (2009)
Citation
Olivier Heuzé, Jean‐Christophe Pain, Gwenael Salin; ON THE EXISTENCE OF SHOCK INSTABILITIES AT HUGONIOT PRESSURES BEYOND THE MINIMUM VOLUME. AIP Conf. Proc. 28 December 2009; 1195 (1): 103–106. https://doi.org/10.1063/1.3294978
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