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Original Articles

A hybrid level set method for modelling detonation and combustion problems in complex geometries

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Pages 219-254 | Published online: 20 Feb 2007

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Read on this site (5)

Alberto M. Hernández & D. Scott Stewart. (2020) Computational modelling of multi-material energetic materials and systems. Combustion Theory and Modelling 24:3, pages 407-441.
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Alberto M. Hernández, D. Scott Stewart & Brandon Lieberthal. (2018) An explicit algorithm for imbedding solid boundaries in Cartesian grids for the reactive Euler equations. Combustion Theory and Modelling 22:4, pages 714-743.
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D. Scott Stewart, Sunhee Yoo & B.L. Wescott. (2007) High-order numerical simulation and modelling of the interaction of energetic and inert materials. Combustion Theory and Modelling 11:2, pages 305-332.
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Yevgenii Rastigejev & Moshe Matalon. (2006) Numerical simulation of flames as gas-dynamic discontinuities. Combustion Theory and Modelling 10:3, pages 459-481.
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Articles from other publishers (14)

Alberto M. Hernández & D. Scott Stewart. Numerical study of detonation transfer from embedded explosives. Numerical study of detonation transfer from embedded explosives.
Bohoon Kim, Seung-gyo Jang & Jack J. Yoh. (2017) A full-scale hydrodynamic simulation of energetic component system. Computers & Fluids 156, pages 368-383.
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Bohoon Kim, Jungsu Park & Jack J. Yoh. (2016) Analysis on shock attenuation in gap test configuration for characterizing energetic materials. Journal of Applied Physics 119:14.
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Bohoon Kim & Jack J. Yoh. (2015) A detailed numerical calibration of shock pressure in the gap test configuration for characterizing non-ideal energetic materials. A detailed numerical calibration of shock pressure in the gap test configuration for characterizing non-ideal energetic materials.
Navin Fogla, Francesco Creta & Moshe Matalon. (2015) Effect of folds and pockets on the topology and propagation of premixed turbulent flames. Combustion and Flame 162:7, pages 2758-2777.
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Seung Hyun Kim. (2015) A front propagation formulation for under-resolved reaction fronts. Journal of Computational Physics 285, pages 193-207.
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Min-cheol Gwak, Younghun Lee, Ki-hong Kim & Jack J. Yoh. (2015) Deformable wall effects on the detonation of combustible gas mixture in a thin-walled tube. International Journal of Hydrogen Energy 40:7, pages 3006-3014.
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Mincheol Gwak, Younghun Lee & Jai-Ick Yoh. (2015) Numerical Investigation of Deformation of Thin-walled Tube Under Detonation of Combustible Gas Mixture. Transactions of the Korean Society of Mechanical Engineers B 39:1, pages 11-19.
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Ki-Hong Kim & Jack J. Yoh. (2013) A particle level-set based Eulerian method for multi-material detonation simulation of high explosive and metal confinements. Proceedings of the Combustion Institute 34:2, pages 2025-2033.
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Qianyi Chen & Kaixin Liu. (2012) A high-resolution Eulerian method for numerical simulation of shaped charge jet including solid–fluid coexistence and interaction. Computers & Fluids 56, pages 92-101.
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John B. Bdzil & D. Scott Stewart. 2012. Shock Waves Science and Technology Library, Vol. 6. Shock Waves Science and Technology Library, Vol. 6 373 453 .
Y. Rastigejev, M. P. Brenner & D. J. Jacob. (2007) Spatial reduction algorithm for atmospheric chemical transport models. Proceedings of the National Academy of Sciences 104:35, pages 13875-13880.
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John B. BdzilD. Scott Stewart. (2007) The Dynamics of Detonation in Explosive Systems. Annual Review of Fluid Mechanics 39:1, pages 263-292.
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D. Scott Stewart, K. C. Tang, Sunhee Yoo, Quinn Brewster & Igor R. Kuznetsov. (2006) Multiscale Modeling of Solid Rocket Motors: Computational Aerodynamic Methods for Stable Quasi-Steady Burning. Journal of Propulsion and Power 22:6, pages 1382-1388.
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