Pages that link to "Item:Q1648610"
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The following pages link to Multiscale multiphase modeling of detonations in condensed energetic materials (Q1648610):
Displaying 21 items.
- Relation between the atomistic picture and continuum mechanics description of detonating solid-state explosives (Q706400) (← links)
- Preface to the special issue ``Recent progress in numerical methods for nonlinear time-dependent flow \& transport problems'' (Q720826) (← links)
- Reprint of: ``Multiscale multiphase modeling of detonations in condensed energetic materials'' (Q720860) (← links)
- Deflagration-to-detonation transition in porous energetic materials: A comparative model study (Q1370097) (← links)
- Three-dimensional parallel simulation of cornstarch-oxygen two-phase detonation (Q1586640) (← links)
- Modelling detonation waves in condensed energetic materials: multiphase CJ conditions and multidimensional computations (Q1932286) (← links)
- Ignition and detonation of solid explosives: a micromechanical burn model (Q1958098) (← links)
- A constitutive model for the non-shock ignition and mechanical response of high explosives (Q1973596) (← links)
- A method to solve Hamilton-Jacobi type equation on unstructured meshes (Q2032054) (← links)
- Exact and numerical solutions of the Riemann problem for a conservative model of compressible two-phase flows (Q2103470) (← links)
- Riemann solver with internal reconstruction (RSIR) for compressible single-phase and non-equilibrium two-phase flows (Q2123317) (← links)
- Automatic differentiation using operator overloading (ADOO) for implicit resolution of hyperbolic single phase and two-phase flow models (Q2222635) (← links)
- HLLC-type and path-conservative schemes for a single-velocity six-equation two-phase flow model: a comparative study (Q2335145) (← links)
- A hybrid genetic algorithm approach to calculating chemical equilibrium and detonation parameters in condensed energetic materials (Q3424356) (← links)
- Numerical simulation of detonation structures using a thermodynamically consistent and fully conservative reactive flow model for multi-component computations (Q3561952) (← links)
- A Thermomechanical Model for Energetic Materials with Phase Transformations (Q4785614) (← links)
- Data-driven blended equations of state for condensed-phase explosives (Q5030768) (← links)
- Diffusively anisotropic model for the deflagration-to-detonation transition (Q5069403) (← links)
- Modeling of producing chemically heterogeneous materials from a homogeneous mixture of reactants in thermal explosion mode (Q5413174) (← links)
- On the existence of multiphase thermal detonations (Q5454761) (← links)
- Computational study of NOx formation in hydrogen-fuelled pulse detonation engines (Q5900276) (← links)