TY - JOUR
T1 - 4.0 MOOSE: Enabling massively parallel Multiphysics simulation
AU - Harbour, Logan
AU - Giudicelli, Guillaume
AU - Lindsay, Alexander D.
AU - German, Peter
AU - Hansel, Joshua
AU - Icenhour, Casey
AU - Li, Mengnan
AU - Miller, Jason M.
AU - Stogner, Roy H.
AU - Behne, Patrick
AU - Yankura, Daniel
AU - Prince, Zachary M.
AU - DeChant, Corey
AU - Schwen, Daniel
AU - Spencer, Benjamin W.
AU - Tano, Mauricio
AU - Choi, Namjae
AU - Wang, Yaqi
AU - Nezdyur, Max
AU - Miao, Yinbin
AU - Hu, Tianchen
AU - Kumar, Shikhar
AU - Matthews, Christopher
AU - Langley, Brandon
AU - Nobre, Nuno
AU - Blair, Alexander
AU - MacMackin, Chris
AU - Rocha, Henrique Bergallo
AU - Palmer, Edward
AU - Carter, Jesse
AU - Meier, Jörg
AU - Slaughter, Andrew E.
AU - Andrš, David
AU - Carlsen, Robert W.
AU - Kong, Fande
AU - Gaston, Derek R.
AU - Permann, Cody J.
PY - 2025/9
Y1 - 2025/9
N2 - Approaching 18 years of existence, MOOSE—the Multiphysics Object-Oriented Simulation Environment—is being developed at a higher pace than ever before. With significant support from four research institutions across the globe, and dozens of new contributors, the capabilities of the framework are being expanded to meet modeling challenges in a wide variety of fields from nuclear system design, to geomechanics, to material science. This includes new development in equation discretization techniques, solver methods, meshing capabilities, application deployment, and user interface improvements. Applications built on MOOSE benefit from all these improvements.
AB - Approaching 18 years of existence, MOOSE—the Multiphysics Object-Oriented Simulation Environment—is being developed at a higher pace than ever before. With significant support from four research institutions across the globe, and dozens of new contributors, the capabilities of the framework are being expanded to meet modeling challenges in a wide variety of fields from nuclear system design, to geomechanics, to material science. This includes new development in equation discretization techniques, solver methods, meshing capabilities, application deployment, and user interface improvements. Applications built on MOOSE benefit from all these improvements.
KW - Finite element
KW - Multiphysics
KW - Finite volume
KW - Engineering
KW - Modeling
KW - Simulation
U2 - 10.1016/j.softx.2025.102264
DO - 10.1016/j.softx.2025.102264
M3 - Article
SN - 2352-7110
VL - 31
SP - 102264
JO - SoftwareX
JF - SoftwareX
ER -