Assessment of Riemann solvers for unsteady one-dimensional inviscid flows of perfect gases JJ Gottlieb, CPT Groth Journal of Computational Physics 78 (2), 437-458, 1988 | 362 | 1988 |
Global three‐dimensional MHD simulation of a space weather event: CME formation, interplanetary propagation, and interaction with the magnetosphere CPT Groth, DL De Zeeuw, TI Gombosi, KG Powell Journal of Geophysical Research: Space Physics 105 (A11), 25053-25078, 2000 | 329* | 2000 |
A numerical study of solar wind—magnetosphere interaction for northward interplanetary magnetic field P Song, DL DeZeeuw, TI Gombosi, CPT Groth, KG Powell Journal of Geophysical Research: Space Physics 104 (A12), 28361-28378, 1999 | 149* | 1999 |
An adaptive MHD method for global space weather simulations DL De Zeeuw, TI Gombosi, CPT Groth, KG Powell, QF Stout IEEE Transactions on Plasma Science 28 (6), 1956-1965, 2000 | 119 | 2000 |
High-order solution-adaptive central essentially non-oscillatory (CENO) method for viscous flows L Ivan, CPT Groth Journal of Computational Physics 257, 830-862, 2014 | 109 | 2014 |
A parallel solution-adaptive scheme for multi-phase core flows in solid propellant rocket motors JS Sachdev, CPT Groth, JJ Gottlieb International Journal of Computational Fluid Dynamics 19 (2), 159-177, 2005 | 108 | 2005 |
LES of a laboratory-scale turbulent premixed Bunsen flame using FSD, PCM-FPI and thickened flame models FE Hernández-Pérez, FTC Yuen, CPT Groth, ÖL Gülder Proceedings of the Combustion Institute 33 (1), 1365-1371, 2011 | 107 | 2011 |
A parallel solution–adaptive method for three-dimensional turbulent non-premixed combusting flows X Gao, CPT Groth Journal of Computational Physics 229 (9), 3250-3275, 2010 | 98 | 2010 |
Magnetospheric configuration for Parker-spiral IMF conditions: Results of a 3D AMR MHD simulation TI Gombosi, DL DeZeeuw, CPT Groth, KG Powell Advances in Space Research 26 (1), 139-149, 2000 | 92 | 2000 |
Towards physically realizable and hyperbolic moment closures for kinetic theory CPT Groth, JG McDonald Continuum Mechanics and Thermodynamics 21, 467-493, 2009 | 88 | 2009 |
A parallel adaptive mesh refinement algorithm for predicting turbulent non-premixed combusting flows X Gao, CPT Groth International Journal of Computational Fluid Dynamics 20 (5), 349-357, 2006 | 87 | 2006 |
A numerical study on the effects of pressure and gravity in laminar ethylene diffusion flames MRJ Charest, CPT Groth, ÖL Gülder Combustion and Flame 158 (10), 1933-1945, 2011 | 86 | 2011 |
Effects of gravity and pressure on laminar coflow methane–air diffusion flames at pressures from 1 to 60 atmospheres MRJ Charest, CPT Groth, ÖL Gülder Combustion and Flame 158 (5), 860-875, 2011 | 79 | 2011 |
Parallel implicit adaptive mesh refinement scheme for body-fitted multi-block mesh C Groth, S Northrup 17th AIAA Computational Fluid Dynamics Conference, 5333, 2005 | 76 | 2005 |
3D multi‐fluid MHD studies of the solar wind interaction with Mars Y Liu, AF Nagy, CPT Groth, DL DeZeeuw, TI Gombosi, KG Powell Geophysical Research Letters 26 (17), 2689-2692, 1999 | 76 | 1999 |
A computational framework for predicting laminar reactive flows with soot formation MRJ Charest, CPT Groth, ÖL Gülder Combustion Theory and Modelling 14 (6), 793-825, 2010 | 75 | 2010 |
The length of the magnetotail for northward IMF: Results of 3D MHD simulations TI Gombosi, DL DeZeeuw, CPT Groth, KG Powell, P Song Physics of Space Plasmas 15, 121-128, 1998 | 73 | 1998 |
Numerical and experimental study of soot formation in laminar diffusion flames burning simulated biogas fuels at elevated pressures MRJ Charest, ÖL Gülder, CPT Groth Combustion and flame 161 (10), 2678-2691, 2014 | 72 | 2014 |
Towards realizable hyperbolic moment closures for viscous heat-conducting gas flows based on a maximum-entropy distribution JG McDonald, CPT Groth Continuum Mechanics and Thermodynamics 25, 573-603, 2013 | 72 | 2013 |
Experimental and numerical study of soot formation in laminar ethylene diffusion flames at elevated pressures from 10 to 35 atm MRJ Charest, HI Joo, ÖL Gülder, CPT Groth Proceedings of the Combustion Institute 33 (1), 549-557, 2011 | 71 | 2011 |