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Thomas JR Hughes
Thomas JR Hughes
Peter O'Donnell Jr. Chair in Computational and Applied Mathematics, University of Texas at Austin
Email verificata su ices.utexas.edu - Home page
Titolo
Citata da
Citata da
Anno
The finite element method: linear static and dynamic finite element analysis
TJR Hughes
Courier Corporation, 2003
156422003
Computational inelasticity
JC Simo, TJR Hughes
Springer Science & Business Media, 2006
81512006
Isogeometric analysis: CAD, finite elements, NURBS, exact geometry and mesh refinement
TJR Hughes, JA Cottrell, Y Bazilevs
Computer methods in applied mechanics and engineering 194 (39-41), 4135-4195, 2005
77972005
Streamline upwind/Petrov-Galerkin formulations for convection dominated flows with particular emphasis on the incompressible Navier-Stokes equations
AN Brooks, TJR Hughes
Computer methods in applied mechanics and engineering 32 (1-3), 199-259, 1982
74851982
Isogeometric analysis: toward integration of CAD and FEA
JA Cottrell, TJR Hughes, Y Bazilevs
John Wiley & Sons, 2009
46232009
Mathematical foundations of elasticity
JE Marsden, TJR Hughes
Courier Corporation, 1994
44541994
Improved numerical dissipation for time integration algorithms in structural dynamics
HM Hilber, TJR Hughes, RL Taylor
Earthquake Engineering & Structural Dynamics 5 (3), 283-292, 1977
34221977
Multiscale phenomena: Green's functions, the Dirichlet-to-Neumann formulation, subgrid scale models, bubbles and the origins of stabilized methods
TJR Hughes
Computer methods in applied mechanics and engineering 127 (1-4), 387-401, 1995
23761995
Lagrangian-Eulerian finite element formulation for incompressible viscous flows
TJR Hughes, WK Liu, TK Zimmermann
Computer methods in applied mechanics and engineering 29 (3), 329-349, 1981
21791981
The variational multiscale method—a paradigm for computational mechanics
TJR Hughes, GR Feijóo, L Mazzei, JB Quincy
Computer methods in applied mechanics and engineering 166 (1-2), 3-24, 1998
21041998
A new finite element formulation for computational fluid dynamics: V. Circumventing the Babuška-Brezzi condition: a stable Petrov-Galerkin formulation of the Stokes problem …
TJR Hughes, LP Franca, M Balestra
Computer Methods in Applied Mechanics and Engineering 59 (1), 85-99, 1986
19991986
A new finite element formulation for computational fluid dynamics: VIII. The Galerkin/least-squares method for advective-diffusive equations
TJR Hughes, LP Franca, GM Hulbert
Computer methods in applied mechanics and engineering 73 (2), 173-189, 1989
19471989
A phase-field description of dynamic brittle fracture
MJ Borden, CV Verhoosel, MA Scott, TJR Hughes, CM Landis
Computer Methods in Applied Mechanics and Engineering 217, 77-95, 2012
17862012
Finite element method for piezoelectric vibration
H Allik, TJR Hughes
International journal for numerical methods in engineering 2 (2), 151-157, 1970
14921970
Isogeometric analysis of structural vibrations
JA Cottrell, A Reali, Y Bazilevs, TJR Hughes
Computer methods in applied mechanics and engineering 195 (41-43), 5257-5296, 2006
14422006
A multidimentional upwind scheme with no crosswind diffusion
TJR Hughes
Finite element methods for convection dominated flows, AMD 34, 1979
13881979
Isogeometric analysis using T-splines
Y Bazilevs, VM Calo, JA Cottrell, JA Evans, TJR Hughes, S Lipton, ...
Computer methods in applied mechanics and engineering 199 (5-8), 229-263, 2010
13612010
Variational multiscale residual-based turbulence modeling for large eddy simulation of incompressible flows
Y Bazilevs, VM Calo, JA Cottrell, TJR Hughes, A Reali, G Scovazzi
Computer methods in applied mechanics and engineering 197 (1-4), 173-201, 2007
13442007
Mixed finite element methods—reduced and selective integration techniques: a unification of concepts
DS Malkus, TJR Hughes
Computer Methods in Applied Mechanics and Engineering 15 (1), 63-81, 1978
13131978
Isogeometric fluid-structure interaction: theory, algorithms, and computations
Y Bazilevs, VM Calo, TJR Hughes, Y Zhang
Computational mechanics 43, 3-37, 2008
11902008
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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