Bretin, Elie; Chapelat, Julien; Outtier, Pierre-Yves; Renard, Yves Shape optimization of a linearly elastic rolling structure under unilateral contact using Nitsche’s method and cut finite elements. (English) Zbl 07548527 Comput. Mech. 70, No. 1, 205-224 (2022). MSC: 74-XX PDF BibTeX XML Cite \textit{E. Bretin} et al., Comput. Mech. 70, No. 1, 205--224 (2022; Zbl 07548527) Full Text: DOI OpenURL
da Costa-Haveroth, T. C.; Haveroth, G. A.; Bittencourt, M. L.; Boldrini, J. L. A damage phase-field model for fractional viscoelastic materials in finite strain. (English) Zbl 07548509 Comput. Mech. 69, No. 6, 1365-1393 (2022). MSC: 74-XX PDF BibTeX XML Cite \textit{T. C. da Costa-Haveroth} et al., Comput. Mech. 69, No. 6, 1365--1393 (2022; Zbl 07548509) Full Text: DOI OpenURL
Diehl, Patrick; Lipton, Robert; Wick, Thomas; Tyagi, Mayank A comparative review of peridynamics and phase-field models for engineering fracture mechanics. (English) Zbl 07548505 Comput. Mech. 69, No. 6, 1259-1293 (2022). MSC: 74-XX PDF BibTeX XML Cite \textit{P. Diehl} et al., Comput. Mech. 69, No. 6, 1259--1293 (2022; Zbl 07548505) Full Text: DOI OpenURL
Assing da Silva, Ivan; Dalledone Machado, Roberto; Arndt, Marcos; de Oliveira Weinhardt, Paulo Assessment of the flat-top stable GFEM for free vibration analysis. (English) Zbl 07546690 Comput. Math. Appl. 117, 271-283 (2022). MSC: 74-XX 65-XX PDF BibTeX XML Cite \textit{I. Assing da Silva} et al., Comput. Math. Appl. 117, 271--283 (2022; Zbl 07546690) Full Text: DOI OpenURL
Liu, Zhijun; Zhang, Yimin; Jiang, Yao; Yang, Han; Yang, Yongtao Unfitted finite element method for fully coupled poroelasticity with stabilization. (English) Zbl 07543716 Comput. Methods Appl. Mech. Eng. 397, Article ID 115132, 31 p. (2022). MSC: 65-XX 74-XX PDF BibTeX XML Cite \textit{Z. Liu} et al., Comput. Methods Appl. Mech. Eng. 397, Article ID 115132, 31 p. (2022; Zbl 07543716) Full Text: DOI OpenURL
Nagashima, Toshio; Wang, Chenyu XFEM analyses using two-dimensional quadrilateral elements enriched with only the heaviside step function. (English) Zbl 07542602 Int. J. Comput. Methods 19, No. 2, Article ID 2150063, 26 p. (2022). MSC: 74-XX 65-XX PDF BibTeX XML Cite \textit{T. Nagashima} and \textit{C. Wang}, Int. J. Comput. Methods 19, No. 2, Article ID 2150063, 26 p. (2022; Zbl 07542602) Full Text: DOI OpenURL
Perera, Roberto; Guzzetti, Davide; Agrawal, Vinamra Graph neural networks for simulating crack coalescence and propagation in brittle materials. (English) Zbl 07532586 Comput. Methods Appl. Mech. Eng. 395, Article ID 115021, 23 p. (2022). MSC: 74-XX 92-XX PDF BibTeX XML Cite \textit{R. Perera} et al., Comput. Methods Appl. Mech. Eng. 395, Article ID 115021, 23 p. (2022; Zbl 07532586) Full Text: DOI OpenURL
Marulli, M. R.; Valverde-González, A.; Quintanas-Corominas, A.; Paggi, M.; Reinoso, J. A combined phase-field and cohesive zone model approach for crack propagation in layered structures made of nonlinear rubber-like materials. (English) Zbl 07532582 Comput. Methods Appl. Mech. Eng. 395, Article ID 115007, 37 p. (2022). MSC: 74-XX 78-XX PDF BibTeX XML Cite \textit{M. R. Marulli} et al., Comput. Methods Appl. Mech. Eng. 395, Article ID 115007, 37 p. (2022; Zbl 07532582) Full Text: DOI OpenURL
Antolin, Pablo; Wei, Xiaodong; Buffa, Annalisa Robust numerical integration on curved polyhedra based on folded decompositions. (English) Zbl 07532558 Comput. Methods Appl. Mech. Eng. 395, Article ID 114948, 24 p. (2022). MSC: 65-XX 92-XX PDF BibTeX XML Cite \textit{P. Antolin} et al., Comput. Methods Appl. Mech. Eng. 395, Article ID 114948, 24 p. (2022; Zbl 07532558) Full Text: DOI OpenURL
Agathos, Konstantinos; Dodwell, Tim; Chatzi, Eleni; Bordas, Stéphane P. A. An adapted deflated conjugate gradient solver for robust extended/generalised finite element solutions of large scale, 3D crack propagation problems. (English) Zbl 07532556 Comput. Methods Appl. Mech. Eng. 395, Article ID 114937, 23 p. (2022). MSC: 74-XX 65-XX PDF BibTeX XML Cite \textit{K. Agathos} et al., Comput. Methods Appl. Mech. Eng. 395, Article ID 114937, 23 p. (2022; Zbl 07532556) Full Text: DOI OpenURL
Wang, Quanxiang; Wang, Liqun; Xie, Jianqiang Two-grid immersed finite volume element methods for semi-linear elliptic interface problems with non-homogeneous jump conditions. (English) Zbl 07528518 Adv. Appl. Math. Mech. 14, No. 4, 842-870 (2022). MSC: 65N30 PDF BibTeX XML Cite \textit{Q. Wang} et al., Adv. Appl. Math. Mech. 14, No. 4, 842--870 (2022; Zbl 07528518) Full Text: DOI OpenURL
Atallah, Nabil M.; Canuto, Claudio; Scovazzi, Guglielmo The high-order shifted boundary method and its analysis. (English) Zbl 07526209 Comput. Methods Appl. Mech. Eng. 394, Article ID 114885, 30 p. (2022). MSC: 65-XX 76-XX PDF BibTeX XML Cite \textit{N. M. Atallah} et al., Comput. Methods Appl. Mech. Eng. 394, Article ID 114885, 30 p. (2022; Zbl 07526209) Full Text: DOI OpenURL
Wu, Yi; Yvonnet, Julien; Li, Pengfei; He, Zhi-Cheng Topology optimization for enhanced dynamic fracture resistance of structures. (English) Zbl 07526199 Comput. Methods Appl. Mech. Eng. 394, Article ID 114846, 24 p. (2022). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{Y. Wu} et al., Comput. Methods Appl. Mech. Eng. 394, Article ID 114846, 24 p. (2022; Zbl 07526199) Full Text: DOI OpenURL
Ma, Pu-Song; Ye, Jia-Yu; Tian, Kun; Chen, Xiu-Hua; Zhang, Lu-Wen Fracture phase field modeling of 3D stitched composite with optimized suture design. (English) Zbl 07525994 Comput. Methods Appl. Mech. Eng. 392, Article ID 114650, 24 p. (2022). MSC: 74-XX 82-XX PDF BibTeX XML Cite \textit{P.-S. Ma} et al., Comput. Methods Appl. Mech. Eng. 392, Article ID 114650, 24 p. (2022; Zbl 07525994) Full Text: DOI OpenURL
Liu, Sijia; Wang, Yunteng; Peng, Chong; Wu, Wei A thermodynamically consistent phase field model for mixed-mode fracture in rock-like materials. (English) Zbl 07525990 Comput. Methods Appl. Mech. Eng. 392, Article ID 114642, 28 p. (2022). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{S. Liu} et al., Comput. Methods Appl. Mech. Eng. 392, Article ID 114642, 28 p. (2022; Zbl 07525990) Full Text: DOI OpenURL
Kothari, Hardik; Krause, Rolf A generalized multigrid method for solving contact problems in Lagrange multiplier based unfitted finite element method. (English) Zbl 07525984 Comput. Methods Appl. Mech. Eng. 392, Article ID 114630, 29 p. (2022). MSC: 65-XX 74-XX PDF BibTeX XML Cite \textit{H. Kothari} and \textit{R. Krause}, Comput. Methods Appl. Mech. Eng. 392, Article ID 114630, 29 p. (2022; Zbl 07525984) Full Text: DOI OpenURL
Jiang, Wen; Liu, Yingjie; Annavarapu, Chandrasekhar A weighted Nitsche’s method for interface problems with higher-order simplex elements. (English) Zbl 07518253 Comput. Mech. 69, No. 5, 1115-1129 (2022). MSC: 74S05 74E05 PDF BibTeX XML Cite \textit{W. Jiang} et al., Comput. Mech. 69, No. 5, 1115--1129 (2022; Zbl 07518253) Full Text: DOI OpenURL
Wang, Quanxiang; Xie, Jianqiang; Zhang, Zhiyue Nonconforming immersed finite element method for solving elliptic optimal control problems with interfaces. (English) Zbl 07518228 Appl. Anal. 101, No. 6, 2197-2216 (2022). MSC: 65M99 82B24 49M05 65K10 PDF BibTeX XML Cite \textit{Q. Wang} et al., Appl. Anal. 101, No. 6, 2197--2216 (2022; Zbl 07518228) Full Text: DOI OpenURL
Bergkamp, Elisa A.; Verhoosel, Clemens V.; Remmers, Joris J. C.; Smeulders, David M. J. A dimensionally-reduced fracture flow model for poroelastic media with fluid entry resistance and fluid slip. (English) Zbl 07518073 J. Comput. Phys. 455, Article ID 110972, 35 p. (2022). MSC: 76Sxx 76Dxx 65Nxx PDF BibTeX XML Cite \textit{E. A. Bergkamp} et al., J. Comput. Phys. 455, Article ID 110972, 35 p. (2022; Zbl 07518073) Full Text: DOI OpenURL
Chen, Xingding; Cai, Xiao-Chuan A recycling preconditioning method with auxiliary tip subspace for elastic crack propagation simulation using XFEM. (English) Zbl 07517739 J. Comput. Phys. 452, Article ID 110910, 25 p. (2022). MSC: 65Nxx 74Sxx 65Fxx PDF BibTeX XML Cite \textit{X. Chen} and \textit{X.-C. Cai}, J. Comput. Phys. 452, Article ID 110910, 25 p. (2022; Zbl 07517739) Full Text: DOI OpenURL
Gulizzi, Vincenzo; Almgren, Ann S.; Bell, John B. A coupled discontinuous Galerkin-finite volume framework for solving gas dynamics over embedded geometries. (English) Zbl 07517120 J. Comput. Phys. 450, Article ID 110861, 26 p. (2022). MSC: 76Mxx 65Mxx 65Nxx PDF BibTeX XML Cite \textit{V. Gulizzi} et al., J. Comput. Phys. 450, Article ID 110861, 26 p. (2022; Zbl 07517120) Full Text: DOI OpenURL
Saye, Robert I. High-order quadrature on multi-component domains implicitly defined by multivariate polynomials. (English) Zbl 07516804 J. Comput. Phys. 448, Article ID 110720, 31 p. (2022). MSC: 65Dxx 65Nxx 41Axx PDF BibTeX XML Cite \textit{R. I. Saye}, J. Comput. Phys. 448, Article ID 110720, 31 p. (2022; Zbl 07516804) Full Text: DOI OpenURL
Bodart, Oliver; Cayol, Valérie; Dabaghi, Farshid; Koko, Jonas An inverse problem in an elastic domain with a crack: a fictitious domain approach. (English) Zbl 1484.86014 Comput. Geosci. 26, No. 2, 423-435 (2022). MSC: 86A22 74G75 86A70 PDF BibTeX XML Cite \textit{O. Bodart} et al., Comput. Geosci. 26, No. 2, 423--435 (2022; Zbl 1484.86014) Full Text: DOI OpenURL
Yan, Pengfei; Cai, Yongchang; Wu, Jie Improve the ill-conditioning for small physical covers by area normalized method in numerical manifold method (NMM). (English) Zbl 07511120 Eng. Anal. Bound. Elem. 139, 192-207 (2022). MSC: 65-XX 81-XX PDF BibTeX XML Cite \textit{P. Yan} et al., Eng. Anal. Bound. Elem. 139, 192--207 (2022; Zbl 07511120) Full Text: DOI OpenURL
Li, Hong; Cui, Cu; Zhang, Qinghui Stable generalized finite element methods (SGFEM) for interfacial crack problems in bi-materials. (English) Zbl 07511080 Eng. Anal. Bound. Elem. 138, 83-94 (2022). MSC: 74-XX 65-XX PDF BibTeX XML Cite \textit{H. Li} et al., Eng. Anal. Bound. Elem. 138, 83--94 (2022; Zbl 07511080) Full Text: DOI OpenURL
Burman, Erik; Frei, Stefan; Massing, Andre Eulerian time-stepping schemes for the non-stationary Stokes equations on time-dependent domains. (English) Zbl 07493698 Numer. Math. 150, No. 2, 423-478 (2022). MSC: 65Mxx PDF BibTeX XML Cite \textit{E. Burman} et al., Numer. Math. 150, No. 2, 423--478 (2022; Zbl 07493698) Full Text: DOI arXiv OpenURL
Han, Jike; Matsubara, Seishiro; Moriguchi, Shuji; Kaliske, Michael; Terada, Kenjiro Crack phase-field model equipped with plastic driving force and degrading fracture toughness for ductile fracture simulation. (English) Zbl 07492663 Comput. Mech. 69, No. 1, 151-175 (2022). MSC: 74-XX PDF BibTeX XML Cite \textit{J. Han} et al., Comput. Mech. 69, No. 1, 151--175 (2022; Zbl 07492663) Full Text: DOI OpenURL
Sabbagh-Yazdi, Saeed-Reza; Farhoud, Arwin; Mohammadi, Amir; Yazdinasabkarani, Elahe Earthquake damage estimation of the koyna concrete gravity dam using explicit GFVM model considering fluid-structure interaction. (English) Zbl 07487710 Math. Comput. Simul. 195, 151-170 (2022). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{S.-R. Sabbagh-Yazdi} et al., Math. Comput. Simul. 195, 151--170 (2022; Zbl 07487710) Full Text: DOI OpenURL
Bekar, Ali Can; Madenci, Erdogan; Haghighat, Ehsan On the solution of hyperbolic equations using the peridynamic differential operator. (English) Zbl 07487687 Comput. Methods Appl. Mech. Eng. 391, Article ID 114574, 23 p. (2022). MSC: 65-XX 35-XX PDF BibTeX XML Cite \textit{A. C. Bekar} et al., Comput. Methods Appl. Mech. Eng. 391, Article ID 114574, 23 p. (2022; Zbl 07487687) Full Text: DOI OpenURL
Sun, Hao; Xiong, Feng; Wu, Zhijun; Ji, Jian; Fan, Lifeng An extended numerical manifold method for two-phase seepage-stress coupling process modelling in fractured porous medium. (English) Zbl 07487661 Comput. Methods Appl. Mech. Eng. 391, Article ID 114514, 29 p. (2022). MSC: 76-XX 74-XX PDF BibTeX XML Cite \textit{H. Sun} et al., Comput. Methods Appl. Mech. Eng. 391, Article ID 114514, 29 p. (2022; Zbl 07487661) Full Text: DOI OpenURL
Dinachandra, Moirangthem; Alankar, Alankar Adaptive finite element modeling of phase-field fracture driven by hydrogen embrittlement. (English) Zbl 07487658 Comput. Methods Appl. Mech. Eng. 391, Article ID 114509, 27 p. (2022). MSC: 74-XX 86-XX PDF BibTeX XML Cite \textit{M. Dinachandra} and \textit{A. Alankar}, Comput. Methods Appl. Mech. Eng. 391, Article ID 114509, 27 p. (2022; Zbl 07487658) Full Text: DOI OpenURL
Liang, Yong; Chandra, Bodhinanda; Soga, Kenichi Shear band evolution and post-failure simulation by the extended material point method (XMPM) with localization detection and frictional self-contact. (English) Zbl 07464761 Comput. Methods Appl. Mech. Eng. 390, Article ID 114530, 32 p. (2022). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{Y. Liang} et al., Comput. Methods Appl. Mech. Eng. 390, Article ID 114530, 32 p. (2022; Zbl 07464761) Full Text: DOI OpenURL
Negi, Alok; Kumar, Sachin A continuous-discontinuous localizing gradient damage framework for failure analysis of quasi-brittle materials. (English) Zbl 07464734 Comput. Methods Appl. Mech. Eng. 390, Article ID 114434, 41 p. (2022). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{A. Negi} and \textit{S. Kumar}, Comput. Methods Appl. Mech. Eng. 390, Article ID 114434, 41 p. (2022; Zbl 07464734) Full Text: DOI OpenURL
Benvenuti, E.; Chiozzi, A.; Manzini, G.; Sukumar, N. Extended virtual element method for two-dimensional linear elastic fracture. (English) Zbl 07464728 Comput. Methods Appl. Mech. Eng. 390, Article ID 114352, 32 p. (2022). MSC: 74-XX 65-XX PDF BibTeX XML Cite \textit{E. Benvenuti} et al., Comput. Methods Appl. Mech. Eng. 390, Article ID 114352, 32 p. (2022; Zbl 07464728) Full Text: DOI arXiv OpenURL
Zhang, Gang; Guo, Tian Fu; Elkhodary, Khalil I.; Tang, Shan; Guo, Xu Mixed graph-FEM phase field modeling of fracture in plates and shells with nonlinearly elastic solids. (English) Zbl 07464480 Comput. Methods Appl. Mech. Eng. 389, Article ID 114282, 25 p. (2022). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{G. Zhang} et al., Comput. Methods Appl. Mech. Eng. 389, Article ID 114282, 25 p. (2022; Zbl 07464480) Full Text: DOI OpenURL
Song, J.; Zhao, L. G.; Qi, H.; Li, S.; Shi, D.; Huang, J.; Su, Y.; Zhang, K. Coupling of phase field and viscoplasticity for modelling cyclic softening and crack growth under fatigue. (English) Zbl 07455261 Eur. J. Mech., A, Solids 92, Article ID 104472, 13 p. (2022). MSC: 74-XX PDF BibTeX XML Cite \textit{J. Song} et al., Eur. J. Mech., A, Solids 92, Article ID 104472, 13 p. (2022; Zbl 07455261) Full Text: DOI OpenURL
Dehghan, Mehdi; Gharibi, Zeinab Optimal convergence analysis of the energy-preserving immersed weak Galerkin method for second-order hyperbolic interface problems in inhomogeneous media. (English) Zbl 07447602 Comput. Math. Appl. 105, 150-171 (2022). MSC: 65-XX 74-XX PDF BibTeX XML Cite \textit{M. Dehghan} and \textit{Z. Gharibi}, Comput. Math. Appl. 105, 150--171 (2022; Zbl 07447602) Full Text: DOI OpenURL
Yue, Qiang; Zhou, Wei; Wang, Qiao; Feng, Y. T.; Ma, Gang; Chang, Xiaolin An adaptive phase-field model based on bilinear elements for tensile-compressive-shear fracture. (English) Zbl 07447600 Comput. Math. Appl. 105, 112-135 (2022). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{Q. Yue} et al., Comput. Math. Appl. 105, 112--135 (2022; Zbl 07447600) Full Text: DOI OpenURL
Poluektov, Michael; Figiel, Łukasz A cut finite-element method for fracture and contact problems in large-deformation solid mechanics. (English) Zbl 07442798 Comput. Methods Appl. Mech. Eng. 388, Article ID 114234, 25 p. (2022). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{M. Poluektov} and \textit{Ł. Figiel}, Comput. Methods Appl. Mech. Eng. 388, Article ID 114234, 25 p. (2022; Zbl 07442798) Full Text: DOI OpenURL
Ballard, M. Keith; Amici, Roman; Shankar, Varun; Ferguson, Lauren A.; Braginsky, Michael; Kirby, Robert M. Towards an extrinsic, CG-XFEM approach based on hierarchical enrichments for modeling progressive fracture. (English) Zbl 07442791 Comput. Methods Appl. Mech. Eng. 388, Article ID 114221, 29 p. (2022). MSC: 65-XX 74-XX PDF BibTeX XML Cite \textit{M. K. Ballard} et al., Comput. Methods Appl. Mech. Eng. 388, Article ID 114221, 29 p. (2022; Zbl 07442791) Full Text: DOI arXiv OpenURL
Pan, Z. Z.; Zhang, L. W.; Liew, K. M. A phase-field framework for failure modeling of variable stiffness composite laminae. (English) Zbl 07442768 Comput. Methods Appl. Mech. Eng. 388, Article ID 114192, 25 p. (2022). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{Z. Z. Pan} et al., Comput. Methods Appl. Mech. Eng. 388, Article ID 114192, 25 p. (2022; Zbl 07442768) Full Text: DOI OpenURL
Peng, Xuan; Lian, Haojie; Ma, Zhenwu; Zheng, Chao Intrinsic extended isogeometric analysis with emphasis on capturing high gradients or singularities. (English) Zbl 07440010 Eng. Anal. Bound. Elem. 134, 231-240 (2022). MSC: 65-XX 76-XX PDF BibTeX XML Cite \textit{X. Peng} et al., Eng. Anal. Bound. Elem. 134, 231--240 (2022; Zbl 07440010) Full Text: DOI OpenURL
Rukavishnikov, Viktor A.; Rukavishnikova, Elena I. Error estimate FEM for the Nikol’skij-Lizorkin problem with degeneracy. (English) Zbl 1477.65240 J. Comput. Appl. Math. 403, Article ID 113841, 11 p. (2022). MSC: 65N30 65Z05 65N15 65N12 65N50 PDF BibTeX XML Cite \textit{V. A. Rukavishnikov} and \textit{E. I. Rukavishnikova}, J. Comput. Appl. Math. 403, Article ID 113841, 11 p. (2022; Zbl 1477.65240) Full Text: DOI OpenURL
Cittadin, Carolina Castro; Corrêa, Ramon Macedo; Arndt, Marcos; Machado, Roberto Dalledone Selective enrichment and modal matrix reduction in the generalized/extended finite element method applied to dynamic analysis of plane state problems. (English) Zbl 07413344 Eur. J. Mech., A, Solids 91, Article ID 104430, 16 p. (2022). MSC: 74-XX PDF BibTeX XML Cite \textit{C. C. Cittadin} et al., Eur. J. Mech., A, Solids 91, Article ID 104430, 16 p. (2022; Zbl 07413344) Full Text: DOI OpenURL
Kwon, In; Kwak, Do Y.; Jo, Gwanghyun Discontinuous bubble immersed finite element method for Poisson-Boltzmann-Nernst-Planck model. (English) Zbl 07505965 J. Comput. Phys. 438, Article ID 110370, 17 p. (2021). MSC: 65Nxx 35Jxx 74Sxx PDF BibTeX XML Cite \textit{I. Kwon} et al., J. Comput. Phys. 438, Article ID 110370, 17 p. (2021; Zbl 07505965) Full Text: DOI OpenURL
Tang, Jinsong; Qian, Linfang; Chen, Guangsong A smoothed GFEM based on Taylor expansion and constrained MLS for analysis of Reissner-Mindlin plate. (English) Zbl 07488888 Int. J. Comput. Methods 18, No. 10, Article ID 2150048, 40 p. (2021). MSC: 74-XX 65-XX PDF BibTeX XML Cite \textit{J. Tang} et al., Int. J. Comput. Methods 18, No. 10, Article ID 2150048, 40 p. (2021; Zbl 07488888) Full Text: DOI OpenURL
Attanayake, Champike; Chou, So-Hsiang Superconvergence and flux recovery for an enriched finite element method. (English) Zbl 07479355 Int. J. Numer. Anal. Model. 18, No. 5, 656-673 (2021). MSC: 65N15 65N30 PDF BibTeX XML Cite \textit{C. Attanayake} and \textit{S.-H. Chou}, Int. J. Numer. Anal. Model. 18, No. 5, 656--673 (2021; Zbl 07479355) Full Text: Link OpenURL
He, Jun; Huang, Shuling; Ding, Xiuli; Zhang, Yuting; Liu, Dengxue On the topology update of the numerical manifold method for multiple crack propagation. (English) Zbl 07446697 Int. J. Comput. Methods 18, No. 8, Article ID 2150030, 30 p. (2021). MSC: 74-XX 65-XX PDF BibTeX XML Cite \textit{J. He} et al., Int. J. Comput. Methods 18, No. 8, Article ID 2150030, 30 p. (2021; Zbl 07446697) Full Text: DOI OpenURL
Sun, Yinghao; Yi, Qi; Wang, Jiao; Sun, Guanhua The virtual element method for rock mass with frictional cracks. (English) Zbl 07439982 Eng. Anal. Bound. Elem. 133, 255-268 (2021). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{Y. Sun} et al., Eng. Anal. Bound. Elem. 133, 255--268 (2021; Zbl 07439982) Full Text: DOI OpenURL
Zhang, Yongzheng; Ren, Huilong; Areias, Pedro; Zhuang, Xiaoying; Rabczuk, Timon Quasi-static and dynamic fracture modeling by the nonlocal operator method. (English) Zbl 07439972 Eng. Anal. Bound. Elem. 133, 120-137 (2021). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{Y. Zhang} et al., Eng. Anal. Bound. Elem. 133, 120--137 (2021; Zbl 07439972) Full Text: DOI OpenURL
Hsu, Chia-Wen; Hwu, Chyanbin A special boundary element for holes/cracks in composite laminates under coupled stretching-bending deformation. (English) Zbl 07439965 Eng. Anal. Bound. Elem. 133, 30-48 (2021). MSC: 74-XX 83-XX PDF BibTeX XML Cite \textit{C.-W. Hsu} and \textit{C. Hwu}, Eng. Anal. Bound. Elem. 133, 30--48 (2021; Zbl 07439965) Full Text: DOI OpenURL
Hirmand, M. R.; Vahab, M.; Papoulia, K. D.; Khalili, N. Energy minimization versus criteria-based methods in discrete cohesive fracture simulations. (English) Zbl 1478.74073 Comput. Mech. 68, No. 4, 845-860 (2021). MSC: 74R10 74G65 74S05 PDF BibTeX XML Cite \textit{M. R. Hirmand} et al., Comput. Mech. 68, No. 4, 845--860 (2021; Zbl 1478.74073) Full Text: DOI OpenURL
Chorfi, Amina; Koko, Jonas; Bodart, Olivier A fictitious domain decomposition method for a nonlinear bonded structure. (English) Zbl 07431482 Math. Comput. Simul. 189, 114-125 (2021). MSC: 65-XX 74-XX PDF BibTeX XML Cite \textit{A. Chorfi} et al., Math. Comput. Simul. 189, 114--125 (2021; Zbl 07431482) Full Text: DOI OpenURL
Geelen, Rudy; Plews, Julia; Dolbow, John Scale-bridging with the extended/generalized finite element method for linear elastodynamics. (English) Zbl 1480.74288 Comput. Mech. 68, No. 2, 295-310 (2021). MSC: 74S05 74B05 74H15 PDF BibTeX XML Cite \textit{R. Geelen} et al., Comput. Mech. 68, No. 2, 295--310 (2021; Zbl 1480.74288) Full Text: DOI OpenURL
Benvenuti, Elena; Orlando, Nicola A mesh-independent framework for crack tracking in elastodamaging materials through the regularized extended finite element method. (English) Zbl 1480.74266 Comput. Mech. 68, No. 1, 25-49 (2021). MSC: 74R05 74R10 74S05 PDF BibTeX XML Cite \textit{E. Benvenuti} and \textit{N. Orlando}, Comput. Mech. 68, No. 1, 25--49 (2021; Zbl 1480.74266) Full Text: DOI OpenURL
Dias-da-Costa, Daniel; Carvalho, Marcelo R.; Bybordiani, Milad A cracked zone clustering method for discrete fracture with minimal enhanced degrees of freedom. (English) Zbl 07427379 Comput. Methods Appl. Mech. Eng. 387, Article ID 114133, 28 p. (2021). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{D. Dias-da-Costa} et al., Comput. Methods Appl. Mech. Eng. 387, Article ID 114133, 28 p. (2021; Zbl 07427379) Full Text: DOI OpenURL
Yang, Liang; Yang, Yongtao; Zheng, Hong; Wu, Zhijun An explicit representation of cracks in the variational phase field method for brittle fractures. (English) Zbl 07427376 Comput. Methods Appl. Mech. Eng. 387, Article ID 114127, 30 p. (2021). MSC: 74-XX 81-XX PDF BibTeX XML Cite \textit{L. Yang} et al., Comput. Methods Appl. Mech. Eng. 387, Article ID 114127, 30 p. (2021; Zbl 07427376) Full Text: DOI OpenURL
Shauer, Nathan; Desmond, Kenneth W.; Gordon, Peter A.; Liu, Fushen; Duarte, C. Armando A three-dimensional generalized finite element method for the simulation of wave propagation in fluid-filled fractures. (English) Zbl 07427362 Comput. Methods Appl. Mech. Eng. 386, Article ID 114136, 39 p. (2021). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{N. Shauer} et al., Comput. Methods Appl. Mech. Eng. 386, Article ID 114136, 39 p. (2021; Zbl 07427362) Full Text: DOI OpenURL
Wang, Xuejing; Botshekan, Meshkat; Ulm, Franz-Josef; Tootkaboni, Mazdak; Louhghalam, Arghavan A hybrid potential of mean force approach for simulation of fracture in heterogeneous media. (English) Zbl 07427325 Comput. Methods Appl. Mech. Eng. 386, Article ID 114084, 21 p. (2021). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{X. Wang} et al., Comput. Methods Appl. Mech. Eng. 386, Article ID 114084, 21 p. (2021; Zbl 07427325) Full Text: DOI OpenURL
Fan, Huo; Huang, Duruo; Wang, Gang Cone complimentary-based numerical manifold method modeling frictional and cohesive contact problems. (English) Zbl 1481.74566 Appl. Math. Modelling 89, Part 2, 1341-1356 (2021). MSC: 74M10 90C33 90C90 PDF BibTeX XML Cite \textit{H. Fan} et al., Appl. Math. Modelling 89, Part 2, 1341--1356 (2021; Zbl 1481.74566) Full Text: DOI OpenURL
Lv, Yu; Yang, Xiang I. A.; Park, George I.; Ihme, Matthias A discontinuous Galerkin method for wall-modeled large-eddy simulations. (English) Zbl 07426231 Comput. Fluids 222, Article ID 104933, 12 p. (2021). MSC: 76-XX PDF BibTeX XML Cite \textit{Y. Lv} et al., Comput. Fluids 222, Article ID 104933, 12 p. (2021; Zbl 07426231) Full Text: DOI OpenURL
Fan, Huo; Huang, Duruo; Wang, Gang A four-way enhanced numerical manifold method for crack propagation and failure analysis of rock slopes. (English) Zbl 1481.74658 Appl. Math. Modelling 95, 623-643 (2021). MSC: 74R10 74L10 PDF BibTeX XML Cite \textit{H. Fan} et al., Appl. Math. Modelling 95, 623--643 (2021; Zbl 1481.74658) Full Text: DOI OpenURL
Meng, Changyu; Wei, Haoyang; Chen, Hailong; Liu, Yongming Modeling plasticity of cubic crystals using a nonlocal lattice particle method. (English) Zbl 07415699 Comput. Methods Appl. Mech. Eng. 385, Article ID 114069, 21 p. (2021). MSC: 74-XX 82-XX PDF BibTeX XML Cite \textit{C. Meng} et al., Comput. Methods Appl. Mech. Eng. 385, Article ID 114069, 21 p. (2021; Zbl 07415699) Full Text: DOI OpenURL
Xue, Tianju; Adriaenssens, Sigrid; Mao, Sheng Mapped phase field method for brittle fracture. (English) Zbl 07415690 Comput. Methods Appl. Mech. Eng. 385, Article ID 114046, 24 p. (2021). MSC: 74-XX 78-XX PDF BibTeX XML Cite \textit{T. Xue} et al., Comput. Methods Appl. Mech. Eng. 385, Article ID 114046, 24 p. (2021; Zbl 07415690) Full Text: DOI OpenURL
Wang, Jiarui; Zhou, Guohua; Hillman, Michael; Madra, Anna; Bazilevs, Yuri; Du, Jing; Su, Kangning Consistent immersed volumetric Nitsche methods for composite analysis. (English) Zbl 07415686 Comput. Methods Appl. Mech. Eng. 385, Article ID 114042, 30 p. (2021). MSC: 74-XX 65-XX PDF BibTeX XML Cite \textit{J. Wang} et al., Comput. Methods Appl. Mech. Eng. 385, Article ID 114042, 30 p. (2021; Zbl 07415686) Full Text: DOI OpenURL
Artioli, E.; Mascotto, L. Enrichment of the nonconforming virtual element method with singular functions. (English) Zbl 07415670 Comput. Methods Appl. Mech. Eng. 385, Article ID 114024, 41 p. (2021). MSC: 65N12 65N15 65N30 PDF BibTeX XML Cite \textit{E. Artioli} and \textit{L. Mascotto}, Comput. Methods Appl. Mech. Eng. 385, Article ID 114024, 41 p. (2021; Zbl 07415670) Full Text: DOI arXiv OpenURL
Tojaga, Vedad; Kulachenko, Artem; Östlund, Sören; Gasser, T. Christian Modeling multi-fracturing fibers in fiber networks using elastoplastic Timoshenko beam finite elements with embedded strong discontinuities – formulation and staggered algorithm. (English) Zbl 07415262 Comput. Methods Appl. Mech. Eng. 384, Article ID 113964, 18 p. (2021). MSC: 74-XX 78-XX PDF BibTeX XML Cite \textit{V. Tojaga} et al., Comput. Methods Appl. Mech. Eng. 384, Article ID 113964, 18 p. (2021; Zbl 07415262) Full Text: DOI OpenURL
Yu, Haitao; Sun, Yuqi Bridging the gap between local and nonlocal numerical methods – a unified variational framework for non-ordinary state-based peridynamics. (English) Zbl 07415260 Comput. Methods Appl. Mech. Eng. 384, Article ID 113962, 33 p. (2021). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{H. Yu} and \textit{Y. Sun}, Comput. Methods Appl. Mech. Eng. 384, Article ID 113962, 33 p. (2021; Zbl 07415260) Full Text: DOI OpenURL
Liu, Zeliang Cell division in deep material networks applied to multiscale strain localization modeling. (English) Zbl 07415231 Comput. Methods Appl. Mech. Eng. 384, Article ID 113914, 36 p. (2021). MSC: 74-XX 82-XX PDF BibTeX XML Cite \textit{Z. Liu}, Comput. Methods Appl. Mech. Eng. 384, Article ID 113914, 36 p. (2021; Zbl 07415231) Full Text: DOI arXiv OpenURL
Mehmani, Yashar; Castelletto, Nicola; Tchelepi, Hamdi A. Nonlinear convergence in contact mechanics: immersed boundary finite volume. (English) Zbl 07415069 Comput. Methods Appl. Mech. Eng. 383, Article ID 113929, 34 p. (2021). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{Y. Mehmani} et al., Comput. Methods Appl. Mech. Eng. 383, Article ID 113929, 34 p. (2021; Zbl 07415069) Full Text: DOI OpenURL
Shilt, Troy; O’Hara, Patrick J.; McNamara, Jack J. Stabilization of advection dominated problems through a generalized finite element method. (English) Zbl 07415048 Comput. Methods Appl. Mech. Eng. 383, Article ID 113889, 29 p. (2021). MSC: 65-XX 76-XX PDF BibTeX XML Cite \textit{T. Shilt} et al., Comput. Methods Appl. Mech. Eng. 383, Article ID 113889, 29 p. (2021; Zbl 07415048) Full Text: DOI OpenURL
Barfusz, Oliver; van der Velden, Tim; Brepols, Tim; Holthusen, Hagen; Reese, Stefanie A reduced integration-based solid-shell finite element formulation for gradient-extended damage. (English) Zbl 07415038 Comput. Methods Appl. Mech. Eng. 382, Article ID 113884, 31 p. (2021). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{O. Barfusz} et al., Comput. Methods Appl. Mech. Eng. 382, Article ID 113884, 31 p. (2021; Zbl 07415038) Full Text: DOI OpenURL
Cai, Ying; Chen, Jinru; Wang, Nan A Nitsche extended finite element method for the biharmonic interface problem. (English) Zbl 07415034 Comput. Methods Appl. Mech. Eng. 382, Article ID 113880, 24 p. (2021). MSC: 65-XX 74-XX PDF BibTeX XML Cite \textit{Y. Cai} et al., Comput. Methods Appl. Mech. Eng. 382, Article ID 113880, 24 p. (2021; Zbl 07415034) Full Text: DOI OpenURL
van den Boom, S. J.; van Keulen, F.; Aragón, A. M. Fully decoupling geometry from discretization in the Bloch-Floquet finite element analysis of phononic crystals. (English) Zbl 07415018 Comput. Methods Appl. Mech. Eng. 382, Article ID 113848, 20 p. (2021). MSC: 74-XX 65-XX PDF BibTeX XML Cite \textit{S. J. van den Boom} et al., Comput. Methods Appl. Mech. Eng. 382, Article ID 113848, 20 p. (2021; Zbl 07415018) Full Text: DOI OpenURL
Storvik, Erlend; Both, Jakub Wiktor; Sargado, Juan Michael; Nordbotten, Jan Martin; Radu, Florin Adrian An accelerated staggered scheme for variational phase-field models of brittle fracture. (English) Zbl 07414349 Comput. Methods Appl. Mech. Eng. 381, Article ID 113822, 19 p. (2021). MSC: 74-XX 65-XX PDF BibTeX XML Cite \textit{E. Storvik} et al., Comput. Methods Appl. Mech. Eng. 381, Article ID 113822, 19 p. (2021; Zbl 07414349) Full Text: DOI arXiv OpenURL
Ongaro, Greta; Seleson, Pablo; Galvanetto, Ugo; Ni, Tao; Zaccariotto, Mirco Overall equilibrium in the coupling of peridynamics and classical continuum mechanics. (English) Zbl 07414329 Comput. Methods Appl. Mech. Eng. 381, Article ID 113515, 47 p. (2021). MSC: 74-XX 70-XX PDF BibTeX XML Cite \textit{G. Ongaro} et al., Comput. Methods Appl. Mech. Eng. 381, Article ID 113515, 47 p. (2021; Zbl 07414329) Full Text: DOI OpenURL
Chin, Eric B.; Sukumar, N. Scaled boundary cubature scheme for numerical integration over planar regions with affine and curved boundaries. (English) Zbl 07414318 Comput. Methods Appl. Mech. Eng. 380, Article ID 113796, 40 p. (2021). MSC: 65-XX 74-XX PDF BibTeX XML Cite \textit{E. B. Chin} and \textit{N. Sukumar}, Comput. Methods Appl. Mech. Eng. 380, Article ID 113796, 40 p. (2021; Zbl 07414318) Full Text: DOI arXiv OpenURL
Olshanskii, Maxim; Quaini, Annalisa; Sun, Qi An unfitted finite element method for two-phase Stokes problems with slip between phases. (English) Zbl 07413659 J. Sci. Comput. 89, No. 2, Paper No. 41, 23 p. (2021). MSC: 65Nxx 76Mxx 76Dxx PDF BibTeX XML Cite \textit{M. Olshanskii} et al., J. Sci. Comput. 89, No. 2, Paper No. 41, 23 p. (2021; Zbl 07413659) Full Text: DOI arXiv OpenURL
Tang, Jinsong; Qian, Linfang; Chen, Guangsong A gradient continuous smoothed GFEM for heat transfer and thermoelasticity analyses. (English) Zbl 1475.74123 Acta Mech. 232, No. 9, 3737-3765 (2021). MSC: 74S05 74F05 PDF BibTeX XML Cite \textit{J. Tang} et al., Acta Mech. 232, No. 9, 3737--3765 (2021; Zbl 1475.74123) Full Text: DOI OpenURL
Legrain, Grégory Non-negative moment fitting quadrature rules for fictitious domain methods. (English) Zbl 07411574 Comput. Math. Appl. 99, 270-291 (2021). MSC: 65-XX 68-XX PDF BibTeX XML Cite \textit{G. Legrain}, Comput. Math. Appl. 99, 270--291 (2021; Zbl 07411574) Full Text: DOI OpenURL
Antonietti, Paola F.; Facciolà, Chiara; Houston, Paul; Mazzieri, Ilario; Pennesi, Giorgio; Verani, Marco High-order discontinuous Galerkin methods on polyhedral grids for geophysical applications: seismic wave propagation and fractured reservoir simulations. (English) Zbl 1470.86002 Di Pietro, Daniele (ed.) et al., Polyhedral methods in geosciences. Cham: Springer. SEMA SIMAI Springer Ser. 27, 159-225 (2021). MSC: 86-08 86A15 74S05 PDF BibTeX XML Cite \textit{P. F. Antonietti} et al., SEMA SIMAI Springer Ser. 27, 159--225 (2021; Zbl 1470.86002) Full Text: DOI OpenURL
Sun, Lei; Tao, Siji; Tang, Xuhai; Liu, Quansheng Simulation of the nonplanar three-dimensional thermal cracking using the finite element-meshfree method. (English) Zbl 1481.74702 Appl. Math. Modelling 99, 106-128 (2021). MSC: 74S05 74R10 PDF BibTeX XML Cite \textit{L. Sun} et al., Appl. Math. Modelling 99, 106--128 (2021; Zbl 1481.74702) Full Text: DOI OpenURL
Zhou, Xiao-Ping; Wang, Long-Fei Investigating propagation path of interface crack by the field-enriched finite element method. (English) Zbl 1481.74706 Appl. Math. Modelling 99, 81-105 (2021). MSC: 74S05 74R10 PDF BibTeX XML Cite \textit{X.-P. Zhou} and \textit{L.-F. Wang}, Appl. Math. Modelling 99, 81--105 (2021; Zbl 1481.74706) Full Text: DOI OpenURL
Madenci, Erdogan; Dorduncu, Mehmet Peridynamic modeling of laminated composites. (English) Zbl 1475.74025 Ghavanloo, Esmaeal (ed.) et al., Size-dependent continuum mechanics approaches. Theory and applications. Cham: Springer. Springer Tracts Mech. Eng., 365-392 (2021). MSC: 74E30 74A70 74R05 74R10 74S99 PDF BibTeX XML Cite \textit{E. Madenci} and \textit{M. Dorduncu}, in: Size-dependent continuum mechanics approaches. Theory and applications. Cham: Springer. 365--392 (2021; Zbl 1475.74025) Full Text: DOI OpenURL
Chen, Lin; de Borst, René Phase-field modelling of cohesive fracture. (English) Zbl 1481.74051 Eur. J. Mech., A, Solids 90, Article ID 104343, 13 p. (2021). MSC: 74A45 74G65 PDF BibTeX XML Cite \textit{L. Chen} and \textit{R. de Borst}, Eur. J. Mech., A, Solids 90, Article ID 104343, 13 p. (2021; Zbl 1481.74051) Full Text: DOI OpenURL
Sabbagh Yazdi, Saeed Reza; Amiri, Tayebeh An efficient automatic adaptive algorithm for cohesive crack propagation modeling of concrete structures using matrix-free unstructured Galerkin finite volume method. (English) Zbl 07384063 Comput. Math. Appl. 97, 237-250 (2021). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{S. R. Sabbagh Yazdi} and \textit{T. Amiri}, Comput. Math. Appl. 97, 237--250 (2021; Zbl 07384063) Full Text: DOI OpenURL
Selvadurai, A. P. S.; Samea, P. Mechanics of a pressurized penny-shaped crack in a poroelastic halfspace. (English) Zbl 07375788 Int. J. Eng. Sci. 163, Article ID 103472, 35 p. (2021). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{A. P. S. Selvadurai} and \textit{P. Samea}, Int. J. Eng. Sci. 163, Article ID 103472, 35 p. (2021; Zbl 07375788) Full Text: DOI OpenURL
Zhou, Xiaoping; Jia, Zhiming; Wang, Longfei A field-enriched finite element method for brittle fracture in rocks subjected to mixed mode loading. (English) Zbl 07371643 Eng. Anal. Bound. Elem. 129, 105-124 (2021). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{X. Zhou} et al., Eng. Anal. Bound. Elem. 129, 105--124 (2021; Zbl 07371643) Full Text: DOI OpenURL
Liu, Zhijun; Guan, Zhichun; Zhang, Peng; Sun, Cong; Liu, Feng; Lin, Shan Explicit edge-based smoothed numerical manifold method for transient dynamic modeling of two-dimensional stationary cracks. (English) Zbl 07371633 Eng. Anal. Bound. Elem. 128, 310-325 (2021). MSC: 74-XX 92-XX PDF BibTeX XML Cite \textit{Z. Liu} et al., Eng. Anal. Bound. Elem. 128, 310--325 (2021; Zbl 07371633) Full Text: DOI OpenURL
Butt, Sahir N.; Meschke, Günther Peridynamic analysis of dynamic fracture: influence of peridynamic horizon, dimensionality and specimen size. (English) Zbl 1467.74078 Comput. Mech. 67, No. 6, 1719-1745 (2021). MSC: 74R10 74A70 74K20 74S99 PDF BibTeX XML Cite \textit{S. N. Butt} and \textit{G. Meschke}, Comput. Mech. 67, No. 6, 1719--1745 (2021; Zbl 1467.74078) Full Text: DOI OpenURL
Pascon, João Paulo; Waisman, Haim A mixed finite element formulation for ductile damage modeling of thermoviscoplastic metals accounting for void shearing. (English) Zbl 1467.74087 Comput. Mech. 67, No. 5, 1307-1330 (2021). MSC: 74S05 74R20 74C10 74F05 74F10 PDF BibTeX XML Cite \textit{J. P. Pascon} and \textit{H. Waisman}, Comput. Mech. 67, No. 5, 1307--1330 (2021; Zbl 1467.74087) Full Text: DOI OpenURL
Macedo Corrêa, Ramon; Arndt, Marcos; Machado, Roberto Dalledone Free in-plane vibration analysis of curved beams by the generalized/extended finite element method. (English) Zbl 1475.74053 Eur. J. Mech., A, Solids 88, Article ID 104244, 12 p. (2021). MSC: 74H45 74K10 74S05 PDF BibTeX XML Cite \textit{R. Macedo Corrêa} et al., Eur. J. Mech., A, Solids 88, Article ID 104244, 12 p. (2021; Zbl 1475.74053) Full Text: DOI OpenURL
Ouardghi, Abdelouahed; El-Amrani, Mofdi; Seaid, Mohammed An enriched Galerkin-characteristics finite element method for convection-dominated and transport problems. (English) Zbl 1476.65214 Appl. Numer. Math. 167, 119-142 (2021). MSC: 65M20 65N30 65D30 PDF BibTeX XML Cite \textit{A. Ouardghi} et al., Appl. Numer. Math. 167, 119--142 (2021; Zbl 1476.65214) Full Text: DOI OpenURL
Rauter, Natalie A computational modeling approach based on random fields for short fiber-reinforced composites with experimental verification by nanoindentation and tensile tests. (English) Zbl 07360525 Comput. Mech. 67, No. 2, 699-722 (2021). MSC: 74-XX PDF BibTeX XML Cite \textit{N. Rauter}, Comput. Mech. 67, No. 2, 699--722 (2021; Zbl 07360525) Full Text: DOI OpenURL
Muixí, Alba; Marco, Onofre; Rodríguez-Ferran, Antonio; Fernández-Méndez, Sonia A combined XFEM phase-field computational model for crack growth without remeshing. (English) Zbl 07360502 Comput. Mech. 67, No. 1, 231-249 (2021). MSC: 74-XX PDF BibTeX XML Cite \textit{A. Muixí} et al., Comput. Mech. 67, No. 1, 231--249 (2021; Zbl 07360502) Full Text: DOI arXiv OpenURL
Spangenberger, Anthony G.; Lados, Diana A. Extended finite element modeling of fatigue crack growth microstructural mechanisms in alloys with secondary/reinforcing phases: model development and validation. (English) Zbl 07360495 Comput. Mech. 67, No. 1, 87-105 (2021). MSC: 74-XX PDF BibTeX XML Cite \textit{A. G. Spangenberger} and \textit{D. A. Lados}, Comput. Mech. 67, No. 1, 87--105 (2021; Zbl 07360495) Full Text: DOI OpenURL
Lee, Chaemin; Park, Jongho A variational framework for the strain-smoothed element method. (English) Zbl 07351734 Comput. Math. Appl. 94, 76-93 (2021). MSC: 65-XX 74-XX PDF BibTeX XML Cite \textit{C. Lee} and \textit{J. Park}, Comput. Math. Appl. 94, 76--93 (2021; Zbl 07351734) Full Text: DOI arXiv OpenURL
Jo, Gwanghyun; Kwak, Do Y.; Lee, Young-Ju Locally conservative immersed finite element method for elliptic interface problems. (English) Zbl 1471.65198 J. Sci. Comput. 87, No. 2, Paper No. 60, 27 p. (2021). MSC: 65N30 65N55 65F08 65F10 35J25 PDF BibTeX XML Cite \textit{G. Jo} et al., J. Sci. Comput. 87, No. 2, Paper No. 60, 27 p. (2021; Zbl 1471.65198) Full Text: DOI arXiv OpenURL
Ramalho, L. D. C.; Belinha, J.; Campilho, R. D. S. G. A novel robust remeshing finite element technique for fracture propagation. (English) Zbl 07341999 Int. J. Comput. Methods 18, No. 2, Article ID 2050040, 25 p. (2021). MSC: 74-XX 65-XX PDF BibTeX XML Cite \textit{L. D. C. Ramalho} et al., Int. J. Comput. Methods 18, No. 2, Article ID 2050040, 25 p. (2021; Zbl 07341999) Full Text: DOI OpenURL
Peng, Fan; Huang, Wei; Ma, Y. E.; Zhang, Z. Q.; Zhang, Yao Phase field modeling of brittle fracture based on the cell-based smooth FEM by considering spectral decomposition. (English) Zbl 07341991 Int. J. Comput. Methods 18, No. 2, Article ID 2050016, 26 p. (2021). MSC: 74-XX 76-XX PDF BibTeX XML Cite \textit{F. Peng} et al., Int. J. Comput. Methods 18, No. 2, Article ID 2050016, 26 p. (2021; Zbl 07341991) Full Text: DOI OpenURL