Today the fundamentals of solid mechanics may be explained by "numerical" experiments using the finite element method. The explanation is detailed in this book using many examples. After a short review of how the finite element method works (in Chapter 1), Chapter 2 develops some key points of solid mechanics: what is a beam? when and how can a structure be represented by beam elements? what are the basic hypotheses? what kind of information does a beam model provide? A generalized beam element is also presented.
Chapter 3 uses the same approach for the discussion on stress concentrations and stress singularities: local effects; influence of geometric discontinuities, such as holes or corners; mesh refinements and/or analytic-numeric approaches.
Chapter 4 is devoted to plate modeling: coupling of membrane and bending, folded, stiffened, composite plates.
Chapter 5 provides a short presentation of the dynamics of structures with a particular focus on the modal method, the influence of local defaults on the modal response is also analyzed.
Commercial software (Ansys) is used to study the examples.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
Alain Berlioz is a Professor at Toulouse University. He teaches solid mechanics courses (strength of materials, finite elements) in several engineering departments. His research activities are related to the stability of dynamic systems.
Philippe Trompette has been a Professor at several engineering schools in France (Lyon and Grenoble Universities). He has developed applications for the finite element method in many engineering fields (aeronautics, civil engineering, sport materials).
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Hardcover. Etat : new. Hardcover. Today the fundamentals of solid mechanics may be explained by "numerical" experiments using the finite element method. The explanation is detailed in this book using many examples. After a short review of how the finite element method works (in Chapter 1), Chapter 2 develops some key points of solid mechanics: what is a beam? when and how can a structure be represented by beam elements? what are the basic hypotheses? what kind of information does a beam model provide? A generalized beam element is also presented. Chapter 3 uses the same approach for the discussion on stress concentrations and stress singularities: local effects; influence of geometric discontinuities, such as holes or corners; mesh refinements and/or analytic-numeric approaches. Chapter 4 is devoted to plate modeling: coupling of membrane and bending, folded, stiffened, composite plates. Chapter 5 provides a short presentation of the dynamics of structures with a particular focus on the modal method, the influence of local defaults on the modal response is also analyzed. Commercial software (Ansys) is used to study the examples. Today the fundamentals of solid mechanics may be explained by numerical experiments using the finite element method. The explanation is detailed in this book using many examples. After a short review of how the finite element method works, Chapter 2 develops some key points of solid mechanics. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. N° de réf. du vendeur 9781848211919
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Etat : New. Today the fundamentals of solid mechanics may be explained by numerical experiments using the finite element method. The explanation is detailed in this book using many examples. After a short review of how the finite element method works, Chapter 2 develops some key points of solid mechanics. Num Pages: 328 pages, Illustrations. BIC Classification: TGMD. Category: (P) Professional & Vocational. Dimension: 236 x 162 x 23. Weight in Grams: 624. . 2010. 1st Edition. Hardcover. . . . . N° de réf. du vendeur V9781848211919
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