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Titlebook: Dynamic Structure of Detonation in Gaseous and Dispersed Media; Anatoly A. Borissov Book 1991 Kluwer Academic Publishers 1991 Explosion.po

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Physical Model of Dynamic Structure of the Surface of Detonation Wave,itesimal perturbations with certain wavelength can grow and form a complex spatial configuration. Nonlinear evolution equation for the front surface is developed. Various physical mechanisms are identified. Spontaneously appearing pulsating cellular structure of the front belongs to the class of aut
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Transition and Structure of Dust Detonations, tube. The complete process of detonation evolution can be distinguished in four stages: 1. initial partial ignition; 2. pressure wave amplification by coherent energy release; 3. unsteady reaction shock; and 4. spin detonation. By decreasing the initiation energy the monotonic acceleration in stage
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On the Detonation of Aluminum Suspensions in Air and in Oxygen,n investigated experimentally. The Al-suspensions of mean size which is more than 10 .m didn’t ignited neither in air medium nor in the oxygen one. Al-air-suspensions with scales-like particles of thickness about 1 . and diametrical size 10–15 .m have the same detonation ability as gaseous fuel-air
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Arno Kinzinger,Marcus Stumpf,Bettina Stillerlished. The structure consists of an ensemble of interacting transverse shock waves sustained by the energy release from chemical reactions. The frequencies of the transverse fluctuations spread over a wide spectrum, however a dominant wavelength (cell size) can usually be identified from the triple
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Methode und Material: Vorgehen und Korpus,itesimal perturbations with certain wavelength can grow and form a complex spatial configuration. Nonlinear evolution equation for the front surface is developed. Various physical mechanisms are identified. Spontaneously appearing pulsating cellular structure of the front belongs to the class of aut
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