[PDF] A First Course in the Finite Element Method By Daryl L. Logan Book Free Download

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A First Course in the Finite Element Method

Download A First Course in the Finite Element Method By Daryl L. Logan – Logan’s A First Course in the Finite Element Method is a comprehensive book for undergraduate Mechanical and Civil Engineers. The book is intended for a basic course which discusses the theory behind the Finite Element Method and how it is applied to structural problems. It begins with one-dimensional trusses and explains the procedure to be followed when solving any problem through FEM. In addition there is a section explaining matrices which helps students prior to beginning their study. The book is indispensable for all students and professionals who are trying to learn the underlying theory behind professional finite element analysis packages.

A FIRST COURSE IN THE FINITE ELEMENT METHOD provides a simple, basic approach to the course material that can be understood by both undergraduate and graduate students without the usual prerequisites (i.e. structural analysis). The book is written primarily as a basic learning tool for the undergraduate student in civil and mechanical engineering whose main interest is in stress analysis and heat transfer. The text is geared toward those who want to apply the finite element method as a tool to solve practical physical problems.

A First Course in the Finite Element Method By Daryl L. Logan – PDF Free Download

A First Course in the Finite Element Method By Daryl L. Logan
A First Course in the Finite Element Method By Daryl L. Logan

Book Details:

Title Of The Book A First Course in the Finite Element Method
Author’s Name Daryl L. Logan
Publishers Daryl L. Logan
File Size 11.9 MB
File Type PDF

Table Of Content:

1. INTRODUCTION.
2. INTRODUCTION TO THE STIFFNESS (DISPLACEMENT) METHOD.
3. DEVELOPMENT OF TRUSS EQUATIONS.
4. DEVELOPMENT OF BEAM EQUATIONS.
5. FRAME AND GRID EQUATIONS.
6. DEVELOPMENT OF THE PLANE STRESS AND STRAIN STIFFNESS EQUATIONS.
7. PRACTICAL CONSIDERATIONS IN MODELING: INTERPRETING RESULTS AND EXAMPLES OF PLANE STRESS-STRAIN ANALYSIS.
8. DEVELOPMENT OF THE LINEAR-STRAIN TRIANGLE EQUATIONS.
9. AXISYMMETRIC ELEMENTS.
10. ISOPARAMETRIC FORMULATION.
11. THREE-DIMENSIONAL STRESS ANALYSIS.
12. PLATE BENDING ELEMENT.

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