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Special Issue on Model Reduction

, , and . International journal for numerical methods in engineering, 102 (5): 931-932 (2015)
DOI: 10.1002/nme.4889

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An Unconventional Domain Decomposition Method for an Efficient Parallel Solution of Large-Scale Finite Element Systems., and . SIAM J. Scientific Computing, 13 (1): 379-396 (1992)Corrigendum to "The GNAT method for nonlinear model reduction: Effective implementation and application to computational fluid dynamics and turbulent flows" J. Comput. Physics 242 (2013) 623-647., , , and . J. Comput. Physics, (2013)A higher-order generalized ghost fluid method for the poor for the three-dimensional two-phase flow computation of underwater implosions., , and . J. Comput. Physics, 227 (16): 7674-7700 (2008)Redesigning the Skyline Solver for Parallel/Vector Supercomputers.. International Journal of High Speed Computing, 2 (3): 223-238 (1990)Reduction of Nonlinear Embedded Boundary Models for Problems with Evolving Interfaces., and . CoRR, (2014)DDEMA: A Data Driven Environment for Multiphysics Applications., , , , , , and . International Conference on Computational Science, volume 2660 of Lecture Notes in Computer Science, page 309-318. Springer, (2003)Modeling, simulation and validation of supersonic parachute inflation dynamics during Mars landing., , , , , and . CoRR, (2019)Editorial: Special issue on modelling reduction, , and . International journal for numerical methods in engineering, 102 (5): 931-932 (2015)On a data-driven environment for multiphysics applications., , , , , , and . Future Generation Comp. Syst., 21 (6): 953-968 (2005)A systematic approach for constructing higher-order immersed boundary and ghost fluid methods for fluid-structure interaction problems., and . J. Comput. Physics, 231 (7): 2892-2923 (2012)