Enhanced Introduction to Finite Elements for Engineers: Solid Mechanics and Its Applications, cartea 268
Autor Uwe Mühlichen Limba Engleză Hardback – iun 2023
The reader is expected to have prior knowledge in engineering mathematics, in particular real analysis and linear algebra. The elements of algebra and analysis requiredin the main part of the book are presented in corresponding sections of the appendix. Students should already have an education in strength of materials or another engineering field, such as heat or mass transport, which discusses boundary value problems for simple geometries and boundary conditions.
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Specificații
ISBN-13: 9783031304217
ISBN-10: 3031304217
Pagini: 197
Ilustrații: XII, 197 p. 35 illus.
Dimensiuni: 155 x 235 mm
Greutate: 0.48 kg
Ediția:2023
Editura: Springer International Publishing
Colecția Springer
Seria Solid Mechanics and Its Applications
Locul publicării:Cham, Switzerland
ISBN-10: 3031304217
Pagini: 197
Ilustrații: XII, 197 p. 35 illus.
Dimensiuni: 155 x 235 mm
Greutate: 0.48 kg
Ediția:2023
Editura: Springer International Publishing
Colecția Springer
Seria Solid Mechanics and Its Applications
Locul publicării:Cham, Switzerland
Cuprins
Chapter 1. Introduction.- Chapter 2. Linear boundary value problems.- Chapter 3. Linear initial boundary value problems.- Chapter 4. Non-linear boundary value problems.- Chapter 5. A primer on non-linear dynamics and multiphysics.
Notă biografică
Uwe Mühlich is an Associate Professor at Universidad Austral del Chile. His primary field of research is materials modelling in the context of continuum mechanics. As a university lecturer, he teaches since almost 20 years continuously introductory courses on finite elements to undergraduate students of civil engineering and mechanical engineering as well as advanced courses on FEM to master students and PhD students.
Textul de pe ultima copertă
The book presents the fundamentals of the Galerkin Finite Element Method for linear boundary value problems from an engineering perspective. Emphasis is given to the theoretical foundation of the method rooted in Functional Analysis using a language accessible to engineers. The book discusses standard procedures for applying the method to time-dependent and nonlinear problems and addresses essential aspects of applying the method to non-linear dynamics and multi-physics problems. It also provides several hand-calculation exercises as well as specific computer exercises with didactic character. About one fourth of the exercises reveals common pitfalls and sources of errors when applying the method. Carefully selected literature recommendations for further studies are provided at the end of each chapter.
The reader is expected to have prior knowledge in engineering mathematics, in particular real analysis and linear algebra. The elements of algebra and analysis required in the main part of the book are presented in corresponding sections of the appendix. Students should already have an education in strength of materials or another engineering field, such as heat or mass transport, which discusses boundary value problems for simple geometries and boundary conditions.
The reader is expected to have prior knowledge in engineering mathematics, in particular real analysis and linear algebra. The elements of algebra and analysis required in the main part of the book are presented in corresponding sections of the appendix. Students should already have an education in strength of materials or another engineering field, such as heat or mass transport, which discusses boundary value problems for simple geometries and boundary conditions.
Caracteristici
Introduces new concepts by means of spatially one-dimensional problems Presents a number of hand calculation exercises and computer exercises with didactic character Provides text and exercises that not only emphasize on how it works, but also on pitfalls