Virtual Element Methods in Engineering Sciences

ยท ยท
ยท Springer Nature
เด‡-เดฌเตเด•เตเด•เต
452
เดชเต‡เดœเตเด•เตพ
เดฑเต‡เดฑเตเดฑเดฟเด‚เด—เตเด•เดณเตเด‚ เดฑเดฟเดตเตเดฏเต‚เด•เดณเตเด‚ เดชเดฐเดฟเดถเต‹เดงเดฟเดšเตเดšเตเดฑเดชเตเดชเดฟเดšเตเดšเดคเดฒเตเดฒ ย เด•เต‚เดŸเตเดคเดฒเดฑเดฟเดฏเตเด•

เดˆ เด‡-เดฌเตเด•เตเด•เดฟเดจเต†เด•เตเด•เตเดฑเดฟเดšเตเดšเต

This book provides a comprehensive treatment of the virtual element method (VEM) for engineering applications, focusing on its application in solid mechanics. Starting with a continuum mechanics background, the book establishes the necessary foundation for understanding the subsequent chapters. It then delves into the VEM's Ansatz functions and projection techniques, both for solids and the Poisson equation, which are fundamental to the method. The book explores the virtual element formulation for elasticity problems, offering insights into its advantages and capabilities. Moving beyond elasticity, the VEM is extended to problems in dynamics, enabling the analysis of dynamic systems with accuracy and efficiency. The book also covers the virtual element formulation for finite plasticity, providing a framework for simulating the behavior of materials undergoing plastic deformation. Furthermore, the VEM is applied to thermo-mechanical problems, where it allows for the investigation ofcoupled thermal and mechanical effects. The book dedicates a significant portion to the virtual elements for fracture processes, presenting techniques to model and analyze fractures in engineering structures. It also addresses contact problems, showcasing the VEM's effectiveness in dealing with contact phenomena. The virtual element method's versatility is further demonstrated through its application in homogenization, offering a means to understand the effective behavior of composite materials and heterogeneous structures. Finally, the book concludes with the virtual elements for beams and plates, exploring their application in these specific structural elements. Throughout the book, the authors emphasize the advantages of the virtual element method over traditional finite element discretization schemes, highlighting its accuracy, flexibility, and computational efficiency in various engineering contexts.

เดฐเดšเดฏเดฟเดคเดพเดตเดฟเดจเต† เด•เตเดฑเดฟเดšเตเดšเต

Professor Dr.-Ing. habil. P. Wriggers studied Civil Engineering at the University Hannover; he obtained his Dr.-Ing degree at the University of Hannover in 1980 on โ€œContact-impact problems.โ€ Since April 2022, he is Emeritus Professor at Leibniz Universitรคt Hannover. Peter Wriggers is Member of the โ€œBraunschweigische Wissenschaftliche Gesellschaft,โ€ the Academy of Science and Literature in Mainz, the German National Academy of Engineering โ€œacatechโ€ and the National Academy of Croatia. He was President of GAMM, President of GACM and Vice-President of IACM. Furthermore, he acts as Editor-in-Chief for the International Journal โ€œComputational Mechanicsโ€ and โ€œComputational Particle Mechanics.โ€ He was awarded the Fellowship of IACM and received the โ€œComputational Mechanics Awardโ€ and the โ€œIACM Awardโ€ of IACM, the โ€œEuler Medalโ€ of ECCOMAS as well as three honorary degrees from the Universities of Poznan, ENS Cachan and TU Darmstadt.

Professor Dr.-Ing. habil. F. Aldakheel is since April 2023 professor for high performance computing at Leibniz Universitรคt Hannover. After studying engineering in Aleppo, he initially worked at Alfurat University in Syria before moving to the Institute of Applied Mechanics at the University of Stuttgart for the master and Ph.D. studies and then the postdoc period. There he was course director for the international master's programme "Computational Mechanics of Materials and Structures" (COMMAS) as well as local director for the excellence programme "Erasmus Mundus Master of Science in Computational Mechanics". Most recently, he was Chief-Engineer/Group-Leader at the Institute for Continuum Mechanics at Leibniz Universitรคt Hannover and Associate Professor (Honorary) at the Zienkiewicz Centre for Computational Engineering at Swansea University, UK. He has been awarded numerous awards, among them the Richard-von-Mises Prize of GAMM (Association of Applied Mathematics and Mechanics). His research interests are related tothe modeling of material behaviors, variational principles, computational solid mechanics, structural mechanics, finite and virtual element methods, multiphysics and multi-scales problems, machine learning, energy transition and experimental validation.

Dr. Blaลพ Hudobivnik studied Civil Engineering at the University of Ljubljana. He was awarded his Doctoral degree in 2016 under the supervision of Prof. Joลพe Korelc. He worked as Young researcher/Researcher between 2011 and October 2016 at the University of Ljubljana and after that he was employed as Postdoctoral researcher until April 2023 at the Institute of Continuum Mechanics at the Leibniz Universitรคt Hannover. Since April 2023 he is employed in industry as simulation expert in mechanical design of batteries. His primary research fields are efficient implementation of nonlinear coupled problems, the development of the virtual element method and its application to a wide range of engineering problems. This includes 2D and 3D applications for linear and nonlinear materials, for static and dynamic solids, plate and contact problems, coupled problems (thermo-hydro-mechanics), phase field methods, multi-scale and optimization problems. Alongside research, he advises other institute members in numerical implementations due to his expert knowledge of the Software-Tool AceGen/AceFEM, developed by his doctoral advisor Prof. Korelc.


เดˆ เด‡-เดฌเตเด•เตเด•เต เดฑเต‡เดฑเตเดฑเต เดšเต†เดฏเตเดฏเตเด•

เดจเดฟเด™เตเด™เดณเตเดŸเต† เด…เดญเดฟเดชเตเดฐเดพเดฏเด‚ เดžเด™เตเด™เดณเต† เด…เดฑเดฟเดฏเดฟเด•เตเด•เตเด•.

เดตเดพเดฏเดจเดพ เดตเดฟเดตเดฐเด™เตเด™เตพ

เดธเตโ€ŒเดฎเดพเตผเดŸเตเดŸเตเดซเต‹เดฃเตเด•เดณเตเด‚ เดŸเดพเดฌเตโ€Œเดฒเต†เดฑเตเดฑเตเด•เดณเตเด‚
Android, iPad/iPhone เดŽเดจเตเดจเดฟเดตเดฏเตเด•เตเด•เดพเดฏเดฟ Google Play เดฌเตเด•เตโ€Œเดธเต เด†เดชเตเดชเต เด‡เตปเดธเตโ€Œเดฑเตเดฑเดพเตพ เดšเต†เดฏเตเดฏเตเด•. เด‡เดคเต เดจเดฟเด™เตเด™เดณเตเดŸเต† เด…เด•เตเด•เต—เดฃเตเดŸเตเดฎเดพเดฏเดฟ เดธเตเดตเดฏเดฎเต‡เดต เดธเดฎเดจเตเดตเดฏเดฟเดชเตเดชเดฟเด•เตเด•เดชเตเดชเต†เดŸเตเด•เดฏเตเด‚, เดŽเดตเดฟเดŸเต† เด†เดฏเดฟเดฐเตเดจเตเดจเดพเดฒเตเด‚ เด“เตบเดฒเตˆเดจเดฟเตฝ เด…เดฒเตเดฒเต†เด™เตเด•เดฟเตฝ เด“เดซเตโ€Œเดฒเตˆเดจเดฟเตฝ เดตเดพเดฏเดฟเด•เตเด•เดพเตป เดจเดฟเด™เตเด™เดณเต† เด…เดจเตเดตเดฆเดฟเด•เตเด•เตเด•เดฏเตเด‚ เดšเต†เดฏเตเดฏเตเดจเตเดจเต.
เดฒเดพเดชเตเดŸเต‹เดชเตเดชเตเด•เดณเตเด‚ เด•เดฎเตเดชเตเดฏเต‚เดŸเตเดŸเดฑเตเด•เดณเตเด‚
Google Play-เดฏเดฟเตฝ เดจเดฟเดจเตเดจเต เดตเดพเด™เตเด™เดฟเดฏเดฟเดŸเตเดŸเตเดณเตเดณ เด“เดกเดฟเดฏเต‹ เดฌเตเด•เตเด•เตเด•เตพ เด•เดฎเตเดชเตเดฏเต‚เดŸเตเดŸเดฑเดฟเดจเตโ€เดฑเต† เดตเต†เดฌเต เดฌเตเดฐเต—เดธเตผ เด‰เดชเดฏเต‹เด—เดฟเดšเตเดšเตเด•เตŠเดฃเตเดŸเต เดตเดพเดฏเดฟเด•เตเด•เดพเดตเตเดจเตเดจเดคเดพเดฃเต.
เด‡-เดฑเต€เดกเดฑเตเด•เดณเตเด‚ เดฎเดฑเตเดฑเต เด‰เดชเด•เดฐเดฃเด™เตเด™เดณเตเด‚
Kobo เด‡-เดฑเต€เดกเดฑเตเด•เตพ เดชเต‹เดฒเตเดณเตเดณ เด‡-เด‡เด™เตเด•เต เด‰เดชเด•เดฐเดฃเด™เตเด™เดณเดฟเตฝ เดตเดพเดฏเดฟเด•เตเด•เดพเตป เด’เดฐเต เดซเดฏเตฝ เดกเต—เตบเดฒเต‹เดกเต เดšเต†เดฏเตเดคเต เด…เดคเต เดจเดฟเด™เตเด™เดณเตเดŸเต† เด‰เดชเด•เดฐเดฃเดคเตเดคเดฟเดฒเต‡เด•เตเด•เต เด•เตˆเดฎเดพเดฑเต‡เดฃเตเดŸเดคเตเดฃเตเดŸเต. เดชเดฟเดจเตเดคเตเดฃเดฏเตเดณเตเดณ เด‡-เดฑเต€เดกเดฑเตเด•เดณเดฟเดฒเต‡เด•เตเด•เต เดซเดฏเดฒเตเด•เตพ เด•เตˆเดฎเดพเดฑเดพเตป, เดธเดนเดพเดฏ เด•เต‡เดจเตเดฆเตเดฐเดคเตเดคเดฟเดฒเตเดณเตเดณ เดตเดฟเดถเดฆเดฎเดพเดฏ เดจเดฟเตผเดฆเตเดฆเต‡เดถเด™เตเด™เตพ เดซเต‹เดณเต‹ เดšเต†เดฏเตเดฏเตเด•.

Peter Wriggers เดŽเดจเตเดจ เดฐเดšเดฏเดฟเดคเดพเดตเดฟเดจเตเดฑเต† เด•เต‚เดŸเตเดคเตฝ เดชเตเดธเตโ€Œเดคเด•เด™เตเด™เตพ

เดธเดฎเดพเดจเดฎเดพเดฏ เด‡-เดฌเตเด•เตเด•เตเด•เตพ