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Titlebook: MATLAB Codes for Finite Element Analysis; Solids and Structure A. J. M. Ferreira Textbook 20091st edition Springer Science+Business Media B

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书目名称MATLAB Codes for Finite Element Analysis
副标题Solids and Structure
编辑A. J. M. Ferreira
视频video
丛书名称Solid Mechanics and Its Applications
图书封面Titlebook: MATLAB Codes for Finite Element Analysis; Solids and Structure A. J. M. Ferreira Textbook 20091st edition Springer Science+Business Media B
描述This book intend to supply readers with some MATLAB codes for ?nite element analysis of solids and structures. After a short introduction to MATLAB, the book illustrates the ?nite element implementation of some problems by simple scripts and functions. The following problems are discussed: • Discrete systems, such as springs and bars • Beams and frames in bending in 2D and 3D • Plane stress problems • Plates in bending • Free vibration of Timoshenko beams and Mindlin plates, including laminated composites • Buckling of Timoshenko beams and Mindlin plates The book does not intends to give a deep insight into the ?nite element details, just the basic equations so that the user can modify the codes. The book was prepared for undergraduate science and engineering students, although it may be useful for graduate students. TheMATLABcodesofthisbookareincludedinthedisk.Readersarewelcomed to use them freely. The author does not guarantee that the codes are error-free, although a major e?ort wastaken to verify all of them. Users should use MATLAB 7.0 or greater when running these codes. Any suggestions or corrections are welcomed by an email to ferreira@fe.up.pt.
出版日期Textbook 20091st edition
关键词Buckling; Finite Element Analysis; MATLAB; Solids; Structures; Vibrations; programming; vibration
版次1
doihttps://doi.org/10.1007/978-1-4020-9200-8
isbn_softcover978-94-007-8955-5
isbn_ebook978-1-4020-9200-8Series ISSN 0925-0042 Series E-ISSN 2214-7764
issn_series 0925-0042
copyrightSpringer Science+Business Media B.V. 2009
The information of publication is updating

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Discrete systems,[4], Onate [5], Zienkiewicz [6], Hughes [7], Hinton [8], just to name a few. Some recent books deal with the finite element analysis with MATLAB codes [9,10]. The programming approach in these books is quite different from the one presented in this book.
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y between states it merges, which we assume to have negative impact on the quality of the finally obtained bound. By means of a simple tie breaking procedure, we show a way to incorporate the similarity of states into minLP using different distance functions to improve dual bounds for the maximum in
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h space. Some results on three 2D test functions and a real case study for the Pump Scheduling Optimization in Water Distribution Networks are reported. The proposed framework proved to be more effective and efficient than Bayesian Optimization approaches using a penalty for function evaluations out
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