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Ditemukan 9806 dokumen yang sesuai dengan query
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Vuong, Anh-Vu
"​Isogeometric finite elements combine the numerical solution of partial differential equations and the description of the computational domain given by rational splines from computer aided geometric design. This work gives a well-founded introduction to this topic and then extends isogeometric finite elements by a local refinement technique, which is essential for an efficient adaptive simulation. There by a hierarchical approach is adapted to the numerical requirements and the relevant theoretical properties of the basis are ensured. The computational results suggest the increased efficiency and the potential of this local refinement method."
Wiesbaden: Springer, 2012
e20418924
eBooks  Universitas Indonesia Library
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Provatidis, Christopher G.
"This self-contained book addresses the three most popular computational methods in CAE (finite elements, boundary elements, collocation methods) in a unified way, bridging the gap between CAD and CAE.
It includes applications to a broad spectrum of engineering (benchmark) application problems, such as elasto-statics/dynamics and potential problems (thermal, acoustics, electrostatics). It also provides a large number of test cases, with full documentation of original sources, making it a valuable resource for any student or researcher in FEA-related areas."
Switzerland: Springer Nature, 2019
e20509407
eBooks  Universitas Indonesia Library
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Zhuo, Zhuang
"Extended finite element method provides an introduction to the extended finite element method (XFEM), a novel computational method which has been proposed to solve complex crack propagation problems. The book helps readers understand the method and make effective use of the XFEM code and software plugins now available to model and simulate these complex problems.
The book explores the governing equation behind XFEM, including level set method and enrichment shape function. The authors outline a new XFEM algorithm based on the continuum-based shell and consider numerous practical problems, including planar discontinuities, arbitrary crack propagation in shells and dynamic response in 3D composite materials."
Oxford, UK: Academic Press, 2014
e20427070
eBooks  Universitas Indonesia Library
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Bathe, Klaus-Jurgen
Englewood Cliffs: Prentice-Hall, 1996
620.004 2 BAT f
Buku Teks  Universitas Indonesia Library
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Zienkiewicz, Olek C.
"The finite element method for solid and structural mechanics is the key text and reference for engineers, researchers and senior students dealing with the analysis and modeling of structures, from large civil engineering projects such as dams to aircraft structures and small engineered components.
This edition brings a thorough update and rearrangement of the book?s content, including new chapters on :
- Material constitution using representative volume elements
- Differential geometry and calculus on manifolds
- Background mathematics and linear shell theory
Focusing on the core knowledge, mathematical and analytical tools needed for successful structural analysis and modeling."
Oxford, UK: Butterworth-Heinemann, 2014
e20427757
eBooks  Universitas Indonesia Library
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Bathe, Klaus-Jurgen
Englewood Cliffs, N.J.: Prentice-Hall, 1982
620.004 22 BAT f
Buku Teks  Universitas Indonesia Library
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Chichester: John Wiley & Sons, 1979
624.171 ENE (1)
Buku Teks  Universitas Indonesia Library
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Hollig, Klaus
"The finite element method (FEM) has become the most widely accepted general-purpose technique for numerical simulations in engineering and applied mathematics. Principal applications arise in continuum mechanics, fluid flow, thermodynamics, and field theory. In these areas, computational methods are essential and benefit strongly from the enormous advances in computer technology. B-splines play an important role in approximation and geometric modeling. They are used in data fitting, computer-aided design (CAD), automated manufacturing (CAM), and computer graphics.
Finite Element Methods with B-Splines describes new weighted approximation techniques, combining the computational advantages of B-splines and standard finite elements. In particular, no grid generation is necessary, which eliminates a difficult and often time-consuming preprocessing step. The meshless methods are very efficient and yield highly accurate solutions with relatively few parameters. This is illustrated for typical boundary value problems in fluid flow, heat conduction, and elasticity.
Topics discussed by the author include basic finite element theory, algorithms for B-splines, weighted bases, stability and error estimates, multigrid techniques, applications, and numerical examples. The text is essentially self-contained and easily accessible to graduate students in mathematics, engineering, and computer sciences. The new concepts are also of interest to academic researchers and to scientists in industry who are developing finite element software. Some basic facts on functional analysis and partial differential equations, which are required, are listed in the appendix."
Philadelphia : Society for Industrial and Applied Mathematics, 2003
e20443052
eBooks  Universitas Indonesia Library
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Zimmerman, William B.J.
New Jersey: World Scientific, 2006
511.42 ZIM m
Buku Teks  Universitas Indonesia Library
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