This book presents the theory and application of the Finite Element Analysis (FEA), incorporating the use of the ANSYS software as an integral part of its content. It is written to assist engineering students and practicing engineers new to the field in gaining a clear understanding of the basic concepts of finite element modeling. The author provides insight into the theoretical aspects of FEA…
Presents the fundamental Finite Element Method (FEM) and its applications specifically in structural analysis. Intended as a core text in civil engineering, the book covers basic concepts of plane stress and plane strain, modeling techniques used in finite element analysis, integral formulations and their applications, and three-dimensional stress analysis. The primary goal is to provide a comp…
Presents a unified treatment of Structural Dynamics using the Finite Element Method (FEM). Intended as a foundational text in civil and engineering fields, it introduces the basic theory of structural dynamics and combines it with the principles of FEM for the analysis of complex structures. The content covers the formulation of mass and stiffness matrices for various structural elements, dynam…
Buku ini menjelaskan tentang prosedur dan tahapan analisis pemodelan struktur secara numerik menggunakan Metode Elemen Hingga (Finite Element Method/FEM), khususnya dengan menggunakan software ABAQUS. Ditujukan untuk membantu mahasiswa/i teknik sipil dan peneliti, buku ini membahas teori dasar FEM, meliputi matriks kekakuan, persoalan 2 dimensi, pelat dan cangkang, serta elemen solid. Selanjutn…
his book provides a foundational introduction to the Finite Element Method (FEM), a crucial numerical technique in engineering and scientific computation. It covers the core principles of FEM, designed to help students and practitioners understand and apply the method to solve complex boundary value problems in fields such as structural analysis and computational fluid dynamics. The text aims t…
Presents the formulation and application of the Boundary Element Method (BEM), a prominent numerical technique, for analyzing complex material phenomena, specifically creep and fracture. BEM is a numerical method used to solve boundary value problems in science and engineering. The main focus of this book is on the computational mechanics analysis of materials, including the formulation for the…
Serves as a foundational introduction to the Finite Element Method (FEM), a powerful numerical technique used to find approximate solutions for complex boundary value problems in engineering and applied mathematics. The author presents key concepts, the mathematical basis (including weighted-residual methods and the Galerkin approach), as well as practical applications of the technique. The met…
This book provides a comprehensive introduction to structural analysis using matrix methods and the finite element displacement approach. D. J. Dawe explains the fundamental principles of structural behavior, focusing on the development of stiffness matrices, displacement formulations, and equilibrium relationships in a systematic and mathematically clear manner. The text covers the formulation…
Finite Element Procedures in Engineering Analysis offers a comprehensive and rigorous presentation of the theory, formulation, and implementation of finite element methods (FEM) used in engineering. The book covers fundamental concepts such as variational principles, discretization, element formulations, interpolation functions, numerical integration, and solution strategies for linear and nonl…
Applied Finite Element Analysis provides a practical and accessible introduction to the finite element method (FEM) for engineering applications. The book explains the core principles of FEM, including discretization, element formulation, interpolation (shape) functions, stiffness matrix development, and numerical solution techniques. Segerlind emphasizes the application of FEM to structural m…