A mortar-type finite element approach for embedding 1D beams into 3D solid volumes

被引:0
|
作者
Ivo Steinbrecher
Matthias Mayr
Maximilian J. Grill
Johannes Kremheller
Christoph Meier
Alexander Popp
机构
[1] University of the Bundeswehr Munich,Institute for Mathematics and Computer
[2] Technical University of Munich,Based Simulation
来源
Computational Mechanics | 2020年 / 66卷
关键词
Beam-to-solid coupling; 1D-3D coupling; Finite element method; Nonlinear beam theory; Mortar methods;
D O I
暂无
中图分类号
学科分类号
摘要
In this work we present a novel computational method for embedding arbitrary curved one-dimensional (1D) fibers into three-dimensional (3D) solid volumes, as e.g. in fiber-reinforced materials. The fibers are explicitly modeled with highly efficient 1D geometrically exact beam finite elements, based on various types of geometrically nonlinear beam theories. The surrounding solid volume is modeled with 3D continuum (solid) elements. An embedded mortar-type approach is employed to enforce the kinematic coupling constraints between the beam elements and solid elements on non-matching meshes. This allows for very flexible mesh generation and simple material modeling procedures in the solid, since it can be discretized without having to account for the reinforcements, while still being able to capture complex nonlinear effects due to the embedded fibers. Several numerical examples demonstrate the consistency, robustness and accuracy of the proposed method, as well as its applicability to rather complex fiber-reinforced structures of practical relevance.
引用
收藏
页码:1377 / 1398
页数:21
相关论文
共 50 条
  • [41] A finite element method for 1D and 2D shallow water
    Emperador, JM
    Hernandez, B
    HYDRAULIC ENGINEERING SOFTWARE VII, 1998, 4 : 279 - 292
  • [42] Multiscale Finite Element Formulations for 2D/1D Problems
    Hollaus, Karl
    Schobinger, Markus
    IEEE TRANSACTIONS ON ENERGY CONVERSION, 2024, 39 (02) : 953 - 962
  • [43] Dynamic fracture of notched plain concrete beams: 3D finite element study
    Bede, Natalija
    Ozbolt, Josko
    Sharma, Akanshu
    Irhan, Baris
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 2015, 77 : 176 - 188
  • [44] 3D nonlinear finite element analysis of HPFRC beams containing PVA fibers
    Shafiq, Nasir
    Ayub, Tehmina
    Khan, Sadaqat Ullah
    ENGINEERING CHALLENGES FOR SUSTAINABLE FUTURE, 2016, : 417 - 421
  • [45] Nanocarbon Interconnects - from 1D to 3D
    Yang, Cary Y.
    2020 IEEE ELECTRON DEVICES TECHNOLOGY AND MANUFACTURING CONFERENCE (EDTM 2020), 2020,
  • [46] 3D reconstruction method with 1D subspace
    Peng, Yali
    Liu, Fang
    Liu, Shigang
    Hsi-An Chiao Tung Ta Hsueh/Journal of Xi'an Jiaotong University, 2009, 43 (12): : 31 - 34
  • [47] Radiative transfer from 1D to 3D
    Juvela, M
    Padoan, P
    PROCEEDINGS OF THE DUSTY AND MOLECULAR UNIVERSE: A PRELUDE TO HERSCHEL AND ALMA, 2005, 577 : 373 - 374
  • [48] The GIRAFFE Archive: 1D and 3D Spectra
    Royer, F.
    Jegouzo, I.
    Tajahmady, F.
    Normand, J.
    Chilingarian, I.
    ASTRONOMICAL DATA ANALYSIS SOFTWARE AND SYSTEMS XXII, 2013, 475 : 155 - +
  • [49] A novel hybrid finite element - Finite difference approach for 3D Magnetotelluric modeling
    Varilsuha, Deniz
    COMPUTERS & GEOSCIENCES, 2024, 188
  • [50] Analysis of 2D and 3D Finite Element Approach of a Switched Reluctance Motor
    Kolota, Jakub
    Stepien, Slawomir
    PRZEGLAD ELEKTROTECHNICZNY, 2011, 87 (12A): : 188 - 190