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Cellular Cell Bifurcation of Cylindrical Detonations 被引量:1
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作者 韩桂来 姜宗林 +1 位作者 王春 张凡 《Chinese Physics Letters》 SCIE CAS CSCD 2008年第6期2125-2127,共3页
Cellular cell pattern evolution of cylindrically-diverging detonations is numerically simulated successfully by solving two-dimensional Euler equations implemented with an improved two-step chemical kinetic model. Fro... Cellular cell pattern evolution of cylindrically-diverging detonations is numerically simulated successfully by solving two-dimensional Euler equations implemented with an improved two-step chemical kinetic model. From the simulation, three cell bifurcation modes are observed during the evolution and referred to as concave front focusing, kinked and wrinkled wave front instability, and self-merging of cellular cells. Numerical research demonstrates that the wave front expansion resulted from detonation front diverging plays a major role in the cellular cell bifurcation, which can disturb the nonlinearly self-sustained mechanism of detonations and finally lead to cell bifurcations. 展开更多
关键词 supernova explosion proto-neutron star shock wave
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