Pages that link to "Item:Q1370097"
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The following pages link to Deflagration-to-detonation transition in porous energetic materials: A comparative model study (Q1370097):
Displaying 14 items.
- Numerical study of blast characteristics from detonation of homogeneous explosives (Q358533) (← links)
- Simulation of impulse effects from explosive charges containing metal particles (Q358540) (← links)
- Behavior of upwind scheme in the low Mach number limit. III: Preconditioned dissipation for a five equation two phase model (Q416628) (← links)
- A five equation reduced model for compressible two-phase flow problems (Q703785) (← links)
- A deflagration analysis of porous energetic materials with two-phase flow and a multiphase sequential reaction mechanism (Q1370098) (← links)
- Deflagration-to-detonation transition in pipes: the analytical theory (Q2307156) (← links)
- Analysis of ignition of a porous energetic material (Q2774430) (← links)
- Asymptotic calculation of the dynamics of self-sustained detonations in condensed phase explosives (Q2863400) (← links)
- On turbulent chemical explosions into dilute aluminum particle clouds (Q3003025) (← links)
- The mechanism of detonation attenuation by a porous medium and its subsequent re-initiation (Q3097638) (← links)
- Modelling of the transition from conductive to convective burning in porous energetic materials (Q5069230) (← links)
- Diffusively anisotropic model for the deflagration-to-detonation transition (Q5069403) (← links)
- Sensitivity of run-to-detonation distance in practical explosives (Q5073675) (← links)
- О качественных свойствах столкновительной модели для описания ударно-волновой динамики газовзвесей (Q5111553) (← links)