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Finite Element Methods in Civil and Mechanical Engineering: A Mathematical Introduction

Autor Arzhang Angoshtari, Ali Gerami Matin
en Limba Engleză Hardback – 10 dec 2020
The finite element method is widely employed for numerical simulations in engineering and science due to its accuracy and efficiency. This concise introduction to the mathematical theory of the finite element method presents a selection of applications in civil and mechanical engineering including beams, elastic membranes, the wave equation, heat transfer, seepage in embankment, soil consolidation, incompressible fluids, and linear elasticity. Jupyter notebooks containing all Python programs of each chapter can be downloaded from the book's companion website.
Arzhang Angoshtari is an assistant professor and Ali Gerami Matin is a graduate student, both in the department of Civil and Environmental Engineering at the George Washington University, USA. Their research interests cover theoretical and computational mechanics and finite element methods.
 
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Specificații

ISBN-13: 9781138335165
ISBN-10: 1138335169
Pagini: 176
Ilustrații: 55 Line drawings, black and white; 55 Illustrations, black and white
Dimensiuni: 156 x 234 x 18 mm
Greutate: 0.4 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States

Public țintă

Postgraduate and Undergraduate

Cuprins

Overview. Preliminaries. Finite Element Interpolation. The Finite Element Method. Applications.

Notă biografică

Arzhang Angoshtari is an assistant professor and Ali Gerami Matin is a graduate student, both in the department of Civil and Environmental Engineering at the George Washington University, USA. Their research interests cover theoretical and computational mechanics and finite element methods.

Descriere

A concise introduction to the mathematical theory of the finite element method plus a selection of applications in civil and mechanical engineering such as beams and frames, elastic membranes, the wave equation, heat transfer, seepage in embankment, soil consolidation, incompressible fluids, and linear elasticity.