Fast Multipole Boundary Element Method: Theory and Applications in Engineering by Yijun Liu - PDF free download eBook

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  • Published: Dec 21, 2015
  • Reviews: 342

Brief introduction:

The fast multipole method is one of the most important algorithms in computing developed in the 20th century. Along with the fast multipole method, the boundary element method (BEM) has also emerged, as a powerful method for modeling large-scale...

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Details of Fast Multipole Boundary Element Method: Theory and Applications in Engineering

ISBN
9780521116596
Publication date
Age range
18+ Years
Book language
EN
Pages
254
Format
PDF, CHM, RTF, TXT
Quality
Extra high quality OCR
Dimensions
7.20 (w) x 10.00 (h) x 1.00 (d)
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Some brief overview of this book

The fast multipole method is one of the most important algorithms in computing developed in the 20th century. Along with the fast multipole method, the boundary element method (BEM) has also emerged, as a powerful method for modeling large-scale problems. BEM models with millions of unknowns on the boundary can now be solved on desktop computers using the fast multipole BEM. This is the first book on the fast multipole BEM, which brings together the classical theories in BEM formulations and the recent development of the fast multipole method. Two- and three-dimensional potential, elastostatic, Stokes flow, and acoustic wave problems are covered, supplemented with exercise problems and computer source codes. Applications in modeling nanocomposite materials, bio-materials, fuel cells, acoustic waves, and image-based simulations are demonstrated to show the potential of the fast multipole BEM. This book will help students, researchers, and engineers to learn the BEM and fast multipole method from a single source.

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A few words about book author

Dr Yijun Liu has more than 25 years of research experience on the boundary element method for subjects including potential; elasticity; and Stokes flow; and electromagnetic, elastic, and acoustic wave problems and has published extensively in research journals. He received his Ph.D. in theoretical and applied mechanics from the University of Illinois and after a post-doctoral research appointment at Iowa State University he joined the Ford Motor Company as a CAE analyst. He has been a facultythe recent development of the fast multipole method. Two- and three-dimensional potential, elastostatic, Stokes flow, and acoustic wave problems are covered, supplemented with exercise problems and computer source codes. Applications in modeling nanocomposite materials, bio-materials, fuel cells, acoustic waves, and image-based simulations are demonstrated to show the potential of the fast multipole BEM. This book will help students, researchers, and engineers to learn the BEM and fast multipole method from a single source.

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