Diff selection: Mark the radio boxes of the revisions to compare and hit enter or the button at the bottom.
Legend: (cur) = difference with latest revision, (prev) = difference with preceding revision, m = minor edit.
L. Gutiérrez, R. Bermejo. A semi-Lagrangian level set method for incompressible Navier-Stokes equations with free surface. Int. J. Numer. Meth. Fluids 49(10) (2005) DOI 10.1002/fld.1041
P. Ming, W. Zhang. Numerical Method for Multi-Body Fluid Interaction Based on Immersed Boundary Method. J Hydrodyn 23(4) (2011) DOI 10.1016/s1001-6058(10)60138-2
E. OÑATE, S. IDELSOHN, F. DEL PIN, R. AUBRY. THE PARTICLE FINITE ELEMENT METHOD — AN OVERVIEW. Int. J. Comput. Methods 01(02) (2012) DOI 10.1142/s0219876204000204
J. Garcia-Espinosa, A. Valls, E. Oñate. ODDLS: A new unstructured mesh finite element method for the analysis of free surface flow problems. Int. J. Numer. Meth. Engng 76(9) DOI 10.1002/nme.2348
E. Oñate, M. Celigueta, S. Idelsohn. Modeling bed erosion in free surface flows by the particle finite element method. Acta Geotech. 1(4) (2006) DOI 10.1007/s11440-006-0019-3
T. Tezduyar, K. Takizawa, Y. Bazilevs. Fluid-Structure Interaction and Flows with Moving Boundaries and Interfaces. (2017) DOI 10.1002/9781119176817.ecm2069
E. Oñate, J. García-Espinosa, S. Idelsohn, B. Serván-Camas. Ship Hydrodynamics. (2017) DOI 10.1002/9781119176817.ecm2070
A. German, J. García-Espinosa, M. Espino, M. Maidana. Simulation of Water Circulation over a Model of a Submarine Canyon by Using FIC-FEM Numerical Model. J. Waterway, Port, Coastal, Ocean Eng. 138(1) DOI 10.1061/(asce)ww.1943-5460.0000105
Y. Bazilevs, M. Hsu, I. Akkerman, D. Benson. Enabling Computational Methods for Offshore Wind Turbines. DOI 10.1007/978-94-007-6143-8_6
E. Oñate, S. Idelsohn, M. Celigueta, R. Rossi, S. Latorre. Possibilities of the Particle Finite Element Method in Computational Mechanics. DOI 10.1007/978-3-642-05241-5_15
E. Oñate, S. Idelsohn, M. Celigueta, R. Rossi, J. Marti, J. Carbonell, P. Ryzhakov, B. Suárez. Advances in the Particle Finite Element Method (PFEM) for Solving Coupled Problems in Engineering. (2011) DOI 10.1007/978-94-007-0735-1_1
I. Akkerman, Y. Bazilevs, D. Benson, M. Farthing, C. Kees. Free-Surface Flow and Fluid-Object Interaction Modeling With Emphasis on Ship Hydrodynamics. 79(1) (2011) DOI 10.1115/1.4005072
K. Takizawa, Y. Bazilevs, T. Tezduyar, M. Hsu, O. Øiseth, K. Mathisen, N. Kostov, S. McIntyre. Computational Engineering Analysis and Design with ALE-VMS and ST Methods. (2014) DOI 10.1007/978-3-319-06136-8_13
E. Oñate, S. Idelsohn, F. Del Pin, R. Aubry. Possibilities of the particle finite element method for fluid-structure interaction problems with free surface waves. Revue Européenne des Éléments Finis 13(5-7) (2012) DOI 10.3166/reef.13.637-666
J. Qin, B. Chen, L. Lu. Finite Element Based Viscous Numerical Wave Flume. Advances in Mechanical Engineering 5 (2015) DOI 10.1155/2013/308436
O. Eugenio. Finite increment calculus (FIC): a framework for deriving enhanced computational methods in mechanics. Adv. Model. and Simul. in Eng. Sci. 3(1) (2016) DOI 10.1186/s40323-016-0065-9
P. Ming, Y. Sun, W. Duan, W. Zhang. Unstructured grid immersed boundary method for numerical simulation of fluid structure interaction. J. Marine. Sci. Appl. 9(2) (2010) DOI 10.1007/s11804-010-9078-9
K. Takizawa, Y. Bazilevs, T. Tezduyar, M. Hsu, O. Øiseth, K. Mathisen, N. Kostov, S. McIntyre. Engineering Analysis and Design with ALE-VMS and Space–Time Methods. Arch Computat Methods Eng 21(4) (2014) DOI 10.1007/s11831-014-9113-0
E. Oñate, A. Valls, J. García. FIC/FEM Formulation with Matrix Stabilizing Terms for Incompressible Flows at Low and High Reynolds Numbers. Comput Mech 38(4-5) (2006) DOI 10.1007/s00466-006-0060-y
E. Oñate, M. Celigueta, S. Idelsohn, F. Salazar, B. Suárez. Possibilities of the particle finite element method for fluid–soil–structure interaction problems. Comput Mech 48(3) (2011) DOI 10.1007/s00466-011-0617-2