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The Finite Element Method for Engineers, by Kenneth H. Huebner, Donald L. Dewhirst, Douglas E. Smith, Ted G. Byrom

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A useful balance of theory, applications, and real-world examples
The Finite Element Method for Engineers, Fourth Edition presents a clear, easy-to-understand explanation of finite element fundamentals and enables readers to use the method in research and in solving practical, real-life problems. It develops the basic finite element method mathematical formulation, beginning with physical considerations, proceeding to the well-established variation approach, and placing a strong emphasis on the versatile method of weighted residuals, which has shown itself to be important in nonstructural applications.
The authors demonstrate the tremendous power of the finite element method to solve problems that classical methods cannot handle, including elasticity problems, general field problems, heat transfer problems, and fluid mechanics problems. They supply practical information on boundary conditions and mesh generation, and they offer a fresh perspective on finite element analysis with an overview of the current state of finite element optimal design.
Supplemented with numerous real-world problems and examples taken directly from the authors' experience in industry and research, The Finite Element Method for Engineers, Fourth Edition gives readers the real insight needed to apply the method to challenging problems and to reason out solutions that cannot be found in any textbook.
- Sales Rank: #1065383 in Books
- Published on: 2001-09-07
- Original language: English
- Number of items: 1
- Dimensions: 9.67" h x 1.55" w x 6.36" l, 2.57 pounds
- Binding: Hardcover
- 744 pages
From the Back Cover
A useful balance of theory, applications, and real-world examples
The Finite Element Method for Engineers, Fourth Edition presents a clear, easy-to-understand explanation of finite element fundamentals and enables readers to use the method in research and in solving practical, real-life problems. It develops the basic finite element method mathematical formulation, beginning with physical considerations, proceeding to the well-established variation approach, and placing a strong emphasis on the versatile method of weighted residuals, which has shown itself to be important in nonstructural applications.
The authors demonstrate the tremendous power of the finite element method to solve problems that classical methods cannot handle, including elasticity problems, general field problems, heat transfer problems, and fluid mechanics problems. They supply practical information on boundary conditions and mesh generation, and they offer a fresh perspective on finite element analysis with an overview of the current state of finite element optimal design.
Supplemented with numerous real-world problems and examples taken directly from the authors' experience in industry and research, The Finite Element Method for Engineers, Fourth Edition gives readers the real insight needed to apply the method to challenging problems and to reason out solutions that cannot be found in any textbook.
About the Author
KENNETH H. HUEBNER, PhD, is retired from Ford Motor Company, where he was manager of the Computer-Aided Engineering Research Staff. He received his PhD from Purdue University in 1969.
DONALD L. DEWHIRST, PhD, has many years of experience in the aerospace and automotive industries. He is recently retired from Ford Motor Company. He received his PhD from the Department of Theoretical and Applied Mechanics at the University of Illinois.
DOUGLAS E. SMITH, PhD, is Assistant Professor, Division of Engineering at the Colorado School of Mines, Golden, Colorado. He has been involved with finite element analysis (FEA) for over fifteen years while working at IBM Corporation and Ford Motor Company. He received his PhD from the University of Illinois, Urbana-Champaign.
TED G. BYROM, PhD, is an independent consulting engineer and a former technology consultant with Oryx Energy Co., Inc. He received his PhD in aerospace engineering from Texas A&M University.
Most helpful customer reviews
6 of 7 people found the following review helpful.
An excellent and thorough introduction.
By Discerning Graduate Student
This book is a gem. It explains the fundamentals underlying FEM and also has examples of practical applications. The overall presentation is clear, easy to read, and rigorous. It is an excellent introduction to the topic that I find myself referring back to time and again.
0 of 1 people found the following review helpful.
Type and half-way explanation
By JEFFTOMO
I am an amateur modeler/coder in EM and elastic problems. This book has some typo (though easy to realize). Being a novice to the FEM, the treatment in B.C. in the early chapters is somewhat vague (e.g., chapter 4 2D heat problems). True to the title of the book, the notation authors use may not appear friendly to a person with physics background.
0 of 1 people found the following review helpful.
Four Stars
By Hassan
thanks
See all 4 customer reviews...
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