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0034287406
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A parallel 3D computational method for fluid-structure interactions in parachute systems
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Kalro V, Tezduyar TE. A parallel 3D computational method for fluid-structure interactions in parachute systems. Computer Methods in Applied Mechanics and Engineering 2000; 190:321-332.
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Computer Methods in Applied Mechanics and Engineering
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Kalro, V.1
Tezduyar, T.E.2
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2
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0034287412
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Parachute fluid-structure interactions: 3-D Computation
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Stein K, Benney R, Kalro V, Tezduyar TE, Leonard J, Accorsi M. Parachute fluid-structure interactions: 3-D Computation. Computer Methods in Applied Mechanics and Engineering 2000; 190:373-386.
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Computer Methods in Applied Mechanics and Engineering
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Stein, K.1
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Kalro, V.3
Tezduyar, T.E.4
Leonard, J.5
Accorsi, M.6
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5
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0035438571
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Fluid-structure interactions of a round parachute: modeling and simulation techniques
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Stein KR, Benney RJ, Tezduyar TE, Leonard JW, Accorsi ML. Fluid-structure interactions of a round parachute: modeling and simulation techniques. Journal of Aircraft 2001; 38:800-808.
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(2001)
Journal of Aircraft
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Stein, K.R.1
Benney, R.J.2
Tezduyar, T.E.3
Leonard, J.W.4
Accorsi, M.L.5
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6
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0037236098
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Aerodynamic interactions between parachute canopies
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Stein K, Tezduyar T, Kumar V, Sathe S, Benney R, Thornburg E, Kyle C, Nonoshita T. Aerodynamic interactions between parachute canopies. Journal of Applied Mechanics 2003; 70:50-57.
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Journal of Applied Mechanics
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Stein, K.1
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Kyle, C.7
Nonoshita, T.8
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9
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33745390125
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Solution techniques for the fully-discretized equations in computation of fluid-structure interactions with the space-time formulations
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Tezduyar TE, Sathe S, Stein K. Solution techniques for the fully-discretized equations in computation of fluid-structure interactions with the space-time formulations. Computer Methods in Applied Mechanics and Engineering 2006; 195:5743-5753.
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Computer Methods in Applied Mechanics and Engineering
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Tezduyar, T.E.1
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Interface projection techniques for fluid-structure interaction modeling with moving-mesh methods
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Tezduyar TE, Sathe S, Pausewang J, Schwaab M, Christopher J, Crabtree J. Interface projection techniques for fluid-structure interaction modeling with moving-mesh methods. Computational Mechanics 2008; 43:39-49.
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Computational Mechanics
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Tezduyar, T.E.1
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11
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52549092774
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Fluid-structure interaction modeling of ringsail parachutes
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Tezduyar TE, Sathe S, Pausewang J, Schwaab M, Christopher J, Crabtree J. Fluid-structure interaction modeling of ringsail parachutes. Computational Mechanics 2008; 43:133-142.
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Computational Mechanics
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Tezduyar, T.E.1
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12
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78649659489
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Space-time finite element computation of complex fluid-structure interactions
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published online, DOI: 10.1002/ÿd.2221.
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Tezduyar TE, Takizawa K, Moorman C, Wright S, Christopher J. Space-time finite element computation of complex fluid-structure interactions. International Journal for Numerical Methods in Fluids 2009; published online, DOI: 10.1002/ÿd.2221.
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International Journal for Numerical Methods in Fluids
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Tezduyar, T.E.1
Takizawa, K.2
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13
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78650353371
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Fluid-structure interaction modeling and performance analysis of the Orion spacecraft parachutes
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published online, May ; DOI: 10.1002/fld.2348.
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Takizawa K, Moorman C, Wright S, Spielman T, Tezduyar TE. Fluid-structure interaction modeling and performance analysis of the Orion spacecraft parachutes. International Journal for Numerical Methods in Fluids, published online, May 2010; DOI: 10.1002/fld.2348.
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International Journal for Numerical Methods in Fluids
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Takizawa, K.1
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Fluid-Structure Interaction-Modelling, Simulation, Optimization, Part II
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Bungartz H-J, Schafer M (eds), Lecture Notes in Computational Science and Engineering. Springer: Berlin,
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Takizawa K, Moorman C, Wright S, Tezduyar TE. Computer modeling and analysis of the Orion spacecraft parachutes. In Fluid-Structure Interaction-Modelling, Simulation, Optimization, Part II, Bungartz H-J, Schafer M (eds), Lecture Notes in Computational Science and Engineering. Springer: Berlin, 2010.
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Computer modeling and analysis of the Orion spacecraft parachutes
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Takizawa, K.1
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Massively parallel finite element computation of incompressible flows involving fluid-body interactions
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Mittal S, Tezduyar TE. Massively parallel finite element computation of incompressible flows involving fluid-body interactions. Computer Methods in Applied Mechanics and Engineering 1994; 112:253-282.
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Johnson AA, Tezduyar TE. Advanced mesh generation and update methods for 3D flow simulations. Computational Mechanics 1999; 23:130-143.
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Computational Mechanics
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Johnson, A.A.1
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Reduced symmetric models for modal analysis of internal structural-acoustic and hydroelastic-sloshing systems
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Ohayon R. Reduced symmetric models for modal analysis of internal structural-acoustic and hydroelastic-sloshing systems. Computer Methods in Applied Mechanics and Engineering 2001; 190:3009-3019.
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Ohayon, R.1
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Mesh moving techniques for fluid-structure interactions with large displacements
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Stein K, Tezduyar T, Benney R. Mesh moving techniques for fluid-structure interactions with large displacements. Journal of Applied Mechanics 2003; 70:58-63.
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Journal of Applied Mechanics
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25
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Influence of wall elasticity on image-based blood flow simulation
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In Japanese.
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Torii R, Oshima M, Kobayashi T, Takagi K, Tezduyar TE. Influence of wall elasticity on image-based blood flow simulation. Japan Society of Mechanical Engineers Journal Series A 2004; 70:1224-1231. In Japanese.
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Japan Society of Mechanical Engineers Journal Series A
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Proceedings of the III International Congress on Numerical Methods in Engineering and Applied Science
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Monterrey, Mexico, Gallegos S, Herrera I, Botello S, Zarate F, Ayala G (eds), CD-ROM.
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Tezduyar TE, Sathe S, Keedy R, Stein K. Space-time techniques for finite element computation of flows with moving boundaries and interfaces. In Proceedings of the III International Congress on Numerical Methods in Engineering and Applied Science, Monterrey, Mexico, Gallegos S, Herrera I, Botello S, Zarate F, Ayala G (eds), 2004. CD-ROM.
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Gerbeau JF, Vidrascu M, Frey P. Fluid-structure interaction in blood flow on geometries based on medical images. Computers and Structures 2005; 83:155-165.
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Torii R, Oshima M, Kobayashi T, Takagi K, Tezduyar TE. Computer modeling of cardiovascular fluid-structure interactions with the Deforming-Spatial-Domain/Stabilized Space-Time formulation. Computer Methods in Applied Mechanics and Engineering 2006; 195:1885-1895.
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Tezduyar TE, Sathe S, Stein K, Aureli L. Modeling of fluid-structure interactions with the space-time techniques. In Fluid-Structure Interaction-Modelling, Simulation, Optimization, Bungartz H-J, Schafer M (eds), Lecture Notes in Computational Science and Engineering, vol. 53. Springer: Berlin, 2006; 50-81.
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Torii R, Oshima M, Kobayashi T, Takagi K, Tezduyar TE. Fluid-structure interaction modeling of aneurysmal conditions with high and normal blood pressures. Computational Mechanics 2006; 38:482-490.
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