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Titlebook: Boundary Element Methods for Engineers and Scientists; An Introductory Cour Lothar Gaul,Martin K?gl,Marcus Wagner Textbook 2003 Springer-Ve

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發(fā)表于 2025-3-21 16:52:14 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Boundary Element Methods for Engineers and Scientists
期刊簡稱An Introductory Cour
影響因子2023Lothar Gaul,Martin K?gl,Marcus Wagner
視頻videohttp://file.papertrans.cn/191/190001/190001.mp4
發(fā)行地址Easy-to-understand introductory course to this difficult field.Thoroughly introduces physical and mathematical fundamentals.Deals with the classical and novel methods.Discusses coupling with other num
圖書封面Titlebook: Boundary Element Methods for Engineers and Scientists; An Introductory Cour Lothar Gaul,Martin K?gl,Marcus Wagner Textbook 2003 Springer-Ve
影響因子Over the past decades, the Boundary Element Method has emerged as a ver- satile and powerful tool for the solution of engineering problems, presenting in many cases an alternative to the more widely used Finite Element Method. As with any numerical method, the engineer or scientist who applies it to a practical problem needs to be acquainted with, and understand, its basic principles to be able to apply it correctly and be aware of its limitations. It is with this intention that we have endeavoured to write this book: to give the student or practitioner an easy-to-understand introductory course to the method so as to enable him or her to apply it judiciously. As the title suggests, this book not only serves as an introductory course, but also cov- ers some advanced topics that we consider important for the researcher who needs to be up-to-date with new developments. This book is the result of our teaching experiences with the Boundary Element Method, along with research and consulting activities carried out in the field. Its roots lie in a graduate course on the Boundary Element Method given by the authors at the university of Stuttgart. The experiences gained from teaching and the
Pindex Textbook 2003
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Numerical Integrationsolutions (?). and shape functions ., cf. (5.67). Depending on the relative position of the load point ξ to the element .. over which the integration is carried out, we have to distinguish between three types of integrals, see Figure 6.1.
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https://doi.org/10.1007/978-3-662-05136-8Acoustics; Continuum; Direct BEM; Dual reciprocity; Elasticity; Fluid-structure; Hybrid BEM; Numerical anal
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R. J. Phaneuf,Hung-Chih Kan,E. D. WilliamsIn Section 5.5, we described the solution of static piezoelectric field problems with the Boundary Element Method, where it was shown that the piezoelectric formulation could be developed through analogy with elastostatics when using a contracted notation to combine elastic and electric variables in a single expression.
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