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1431 Computational Shock and Multiphysics
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Guglielmo Scovazzi

Publications


Journal articles and SAND reports  (typos are periodically corrected)
Book chapters
Ph.D. thesis
Conference proceedings

Journal articles,  SANDIA reports, and internal reports



Guglielmo Scovazzi, John N. Shadid, Edward Love, William J. Rider, "A nodal-based, variational multiscale method for Lagrangian shock hydrodynamics",
SAND-2009-5236J. (submitted to Comp. Meth. Appl. Mech. Eng.)

Guglielmo Scovazzi, Edward Love, "A generalized view on Galilean invariance in stabilized compressible flow computations", SAND-2009-5238J (submitted to IJNMF, special issue on occasion of the 2009 Finite Element in Fluids Conference, Tokyo, Japan).

Edward Love, William J. Rider, Guglielmo Scovazzi, "Stability analysis of a predictor/multi-corrector method for staggered-grid Lagrangian shock hydrdynamics", SAND-2009-1525J, J. Comp. Physics 228(20), Nov. 2009, pp. 7543-7564.

Edward Love, Guglielmo Scovazzi, "On the angular momentum conservation and incremental objectivity properties of a predictor/multi-corrector method for Lagrangian shock hydrodynamics", SAND-2009-1526J, Comp. Meth. Appl. Mech. Eng. 198(41-44), Sept. 2009, pp. 3207-3213.

Guglielmo Scovazzi, Edward Love, Mikhail J. Shashkov, "Multi-scale Lagrangian shock-hydrodynamics on Q1/P0 finite elements: Theoretical framework and two-dimensional computations", SAND-2007-4182J, (Comp. Meth. Appl. Mech. Eng. 197(9-12), Feb. 2008, pp. 1056-1079).

Guglielmo Scovazzi, Edward Love, Mikhail J. Shashkov, "A multi-scale Q1/P0 approach to Lagrangian shock hydrodynamics" SAND-2007-1423.

Yury Bazilevs, Victor M. Calo, J. Austin Cottrell, Thomas J. R. Hughes, Alessandro Reali, G. Scovazzi, "Variational Multiscale Methods in Turbulence", SAND-2007-2848J, (Comp. Meth. Appl. Mech. Eng., 197(1-4), Dec. 2007, pp 173-201).

Guglielmo Scovazzi, "Galilean invariance and stabilized methods for compressible flows", SAND-2006-7374J (Int. J. Num. Meth. Fluids, 54(6-8), Feb. 2007, pp 757-778, special issue on occasion of the the World Congress on Computational Mechanics, Los Angeles, 2006).

Guglielmo Scovazzi, "A discourse on Galilean invariance, SUPG stabilization, and the variational multiscale framework", SAND-2006-5020J (Comp. Meth. Appl. Mech. Eng., 196(4-6), Jan. 2007, pp.  1108-1132).

Guglielmo Scovazzi, "Stabilized shock hydrodynamics: II. Design and physical interpretation of the SUPG operator for Lagrangian computations", SAND-2005-7747J (Comp. Meth. Appl. Mech. Eng., 196(4-6), Jan. 2007, pp.  967-978).

Guglielmo Scovazzi, Mark A. Christon, Thomas J. R. Hughes, and John N. Shadid, "Stabilized shock hydrodynamics: I. A Lagrangian method", SAND-2005-7563J (Comp. Meth. Appl. Mech. Eng., 196(4-6), Jan. 2007, pp.  923-966).

Thomas J. R. Hughes, Guglielmo Scovazzi, Pavel B. Bochev, and Annalisa Buffa, "A Multiscale discontinuous Galerkin method with the computational structure of a continuous Galerkin method", SAND-2005-2124J, Comp. Meth. Appl. Mech. Eng., 195(19-22), April 2006, pp. 2761-2787.

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Book chapters 


Thomas J. R. Hughes, Guglielmo Scovazzi, Leopoldo P. Franca , "Multiscale and  Stabilized Methods",  in Encyclopedia of Computational Mechanics ,  eds. E. Stein, R. De Borst, T. J. R. Hughes, Wiley, 2004. PDF-preprint (ICES report 2004-18).

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Ph.D. thesis


Guglielmo Scovazzi,
"Multiscale Methods in Science and Engineering", Mechanical Engineering Department, Stanford University, August 2004. PDF-file

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Conference proceedings


Thomas J. R. Hughes, Victor M. Calo, G. Scovazzi, "Variational and Multiscale Methods in Turbulence", in Proceedings of the XXI International Congress of Theoretical and Applied Mechanics (IUTAM), eds. W. Gutkowski and T. A. Kowalewski, Kluwer, 2004. PDF-file (ICES report 2004-46).

Pavel B. Bochev, Thomas J. R. Hughes, Guglielmo Scovazzi, "A multiscale discontinous Galerkin method", SAND-2005-2587C, in Lecture Notes in Computer Science, Vol. 3743, pp. 84-93, Springer, 2006.

Yury Bazilevs, Victor M. Calo, J. Austin Cottrell, Thomas J. R. Hughes, Alessandro Reali, G. Scovazzi, "Variational Multiscale Residual-driven Turbulence Modeling for Large Edddy Simulation of Incompressible Flow"2007. In Proceedings of ECCOMAS Thematic Conference in Multi-scale methods for Solids and Fluids, A. Ibrahimbegovic, F. Dias, H. Matthies, P. Wriggers (eds.), Cachan, France, November 28-30, 2007. PDF-file

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Contact
E-mail: gscovaz@sandia.gov
(505) 844-0707 (Phone)

Mailing address (USPS)
Sandia National Laboratories
P.O. Box 5800, MS 1319
Albuquerque, NM 87185-1319

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Sandia National Laboratories
1515 Eubank SE,
CSRI Building, Room 311
Albuquerque, NM 87123-1319