F. Salazar, J. Irazábal, A. Larese, E. Oñate. Numerical modelling of landslide-generated waves with the particle finite element method (PFEM) and a non-Newtonian flow model. Int. J. Numer. Anal. Meth. Geomech. 40(6) (2015) DOI 10.1002/nag.2428
K. Takizawa, T. Tezduyar, T. Kuraishi. Multiscale space–time methods for thermo-fluid analysis of a ground vehicle and its tires. Math. Models Methods Appl. Sci. 25(12) (2015) DOI 10.1142/s0218202515400072
K. Takizawa, T. Tezduyar, H. Mochizuki, H. Hattori, S. Mei, L. Pan, K. Montel. Space–time VMS method for flow computations with slip interfaces (ST-SI). Math. Models Methods Appl. Sci. 25(12) (2015) DOI 10.1142/s0218202515400126
J. Cotela-Dalmau, R. Rossi, A. Larese. Simulation of two- and three-dimensional viscoplastic flows using adaptive mesh refinement. Int J Numer Methods Eng 112(11) (2017) DOI 10.1002/nme.5574
A. Larese, R. Rossi, E. Oñate. Simulation of the beginning of failure in rockfill dams caused by overtopping. (2015) DOI 10.1201/b18292-12
P. Becker, S. Idelsohn. A multiresolution strategy for solving landslides using the Particle Finite Element Method. Acta Geotech. 11(3) (2016) DOI 10.1007/s11440-016-0464-6
C. Peng, X. Guo, W. Wu, Y. Wang. Unified modelling of granular media with Smoothed Particle Hydrodynamics. Acta Geotech. 11(6) (2016) DOI 10.1007/s11440-016-0496-y
A. Larese. A Lagrangian PFEM approach for non-Newtonian viscoplastic materials. Revista Internacional de Métodos Numéricos para Cálculo y Diseño en Ingeniería 33(3-4) DOI 10.1016/j.rimni.2016.07.002
A. Larese, R. Rossi, E. Oñate, M. Toledo, R. Morán, H. Campos. Numerical and Experimental Study of Overtopping and Failure of Rockfill Dams. Int. J. Geomech. 15(4) DOI 10.1061/(asce)gm.1943-5622.0000345
I. Iaconeta, A. Larese, R. Rossi, Z. Guo. Comparison of a Material Point Method and a Galerkin Meshfree Method for the Simulation of Cohesive-Frictional Materials. Materials 10(10) (2017) DOI 10.3390/ma10101150
J. Cante, C. Dávalos, J. Hernández, J. Oliver, P. Jonsén, G. Gustafsson, H. Häggblad. PFEM-based modeling of industrial granular flows. Comp. Part. Mech. 1(1) (2014) DOI 10.1007/s40571-014-0004-9
J. Rodríguez, P. Jonsén, A. Svoboda. Simulation of metal cutting using the particle finite-element method and a physically based plasticity model. Comp. Part. Mech. 4(1) (2016) DOI 10.1007/s40571-016-0120-9
L. Monforte, J. Carbonell, M. Arroyo, A. Gens. Performance of mixed formulations for the particle finite element method in soil mechanics problems. Comp. Part. Mech. 4(3) (2016) DOI 10.1007/s40571-016-0145-0
Y. Fukumoto, S. Ohtsuka. 3-D direct numerical model for failure of non-cohesive granular soils with upward seepage flow. Comp. Part. Mech. 5(4) (2017) DOI 10.1007/s40571-017-0180-5
Y. Yamaguchi, S. Takase, S. Moriguchi, K. Terada. Solid–liquid coupled material point method for simulation of ground collapse with fluidization. Comp. Part. Mech. 7(2) (2019) DOI 10.1007/s40571-019-00249-w
W. Yuan, W. Zhang, B. Dai, Y. Wang. Application of the particle finite element method for large deformation consolidation analysis. EC 36(9) DOI 10.1108/ec-09-2018-0407
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
T. Oliveira, A. Sanchez-Arcilla, X. Gironella, O. Madsen. On the generation of regular long waves in numerical wave flumes based on the particle finite element method. Journal of Hydraulic Research 55(4) (2017) DOI 10.1080/00221686.2016.1275047
K. TAKIZAWA, T. E. TEZDUYAR. Main aspects of the space–time computational FSI techniques and examples of challenging problems solved. 1(1) DOI 10.1299/mer.2014cm0005
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
A. Larese, R. Rossi, E. Oñate. Finite Element Modeling of Free Surface Flow in Variable Porosity Media. Arch Computat Methods Eng 22(4) (2014) DOI 10.1007/s11831-014-9140-x
K. Takizawa, T. Tezduyar. Space–time computation techniques with continuous representation in time (ST-C). Comput Mech 53(1) (2013) DOI 10.1007/s00466-013-0895-y
K. Takizawa, T. Tezduyar, A. Buscher, S. Asada. Space–time interface-tracking with topology change (ST-TC). Comput Mech 54(4) (2013) DOI 10.1007/s00466-013-0935-7
K. Takizawa, T. Tezduyar, N. Kostov. Sequentially-coupled space–time FSI analysis of bio-inspired flapping-wing aerodynamics of an MAV. Comput Mech 54(2) (2014) DOI 10.1007/s00466-014-0980-x
K. Takizawa. Computational engineering analysis with the new-generation space–time methods. Comput Mech 54(2) (2014) DOI 10.1007/s00466-014-0999-z
H. Suito, K. Takizawa, V. Huynh, D. Sze, T. Ueda. FSI analysis of the blood flow and geometrical characteristics in the thoracic aorta. Comput Mech 54(4) (2014) DOI 10.1007/s00466-014-1017-1
K. Takizawa, T. Tezduyar, A. Buscher, S. Asada. Space–time fluid mechanics computation of heart valve models. Comput Mech 54(4) (2014) DOI 10.1007/s00466-014-1046-9
K. Takizawa, T. Tezduyar, C. Boswell, R. Kolesar, K. Montel. FSI modeling of the reefed stages and disreefing of the Orion spacecraft parachutes. Comput Mech 54(5) (2014) DOI 10.1007/s00466-014-1052-y
K. Takizawa, T. Tezduyar, R. Kolesar, C. Boswell, T. Kanai, K. Montel. Multiscale methods for gore curvature calculations from FSI modeling of spacecraft parachutes. Comput Mech 54(6) (2014) DOI 10.1007/s00466-014-1069-2
K. Takizawa, T. Tezduyar, C. Boswell, Y. Tsutsui, K. Montel. Special methods for aerodynamic-moment calculations from parachute FSI modeling. Comput Mech 55(6) (2014) DOI 10.1007/s00466-014-1074-5
K. Takizawa, T. Tezduyar, A. Buscher. Space–time computational analysis of MAV flapping-wing aerodynamics with wing clapping. Comput Mech 55(6) (2015) DOI 10.1007/s00466-014-1095-0
K. Takizawa, T. Tezduyar, R. Kolesar. FSI modeling of the Orion spacecraft drogue parachutes. Comput Mech 55(6) (2014) DOI 10.1007/s00466-014-1108-z
N. Lafontaine, R. Rossi, M. Cervera, M. Chiumenti. Explicit mixed strain-displacement finite element for dynamic geometrically non-linear solid mechanics. Comput Mech 55(3) (2015) DOI 10.1007/s00466-015-1121-x