It is assumed that readers are familiar with the fundamentals of the strength of materials as offered in an introductory level course in a typical undergraduate engineering program. However, basic theories and formulas have been included. This textbook can be adopted for an introductory level course in FEA offered to students in mechanical and civil engineering, and engineering technology programs.
Finite element method
The Direct Stiffness Method is used to develop the bar, truss, beam and frame elements. Both analytical and simulation solutions are presented through examples and tutorials to ensure that readers understand the fundamentals of FEA and the simulation software. It is strongly recommended that readers always find a way to verify the FEA simulation results.
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Either by signing into your account or linking your membership details before your order is placed. Your points will be added to your account once your order is shipped. Click on the cover image above to read some pages of this book! Covers the basic concepts of the finite element method and their application to the analysis of plane structures and two-dimensional continuum problems in heat transfer, irrotational fluid flow, and elasticity.
EGR 615 - Applied Finite Element Analysis
This revised edition includes a reorganization of topics and an increase in the number of homework problems. The emphasis on numerical illustrations make topis clear without heavy use of sophisticated mathematics. Help Centre. My Wishlist Sign In Join. Be the first to write a review.
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CAD applying the finite-element method for dielectric-resonator filters - IEEE Journals & Magazine
Link Either by signing into your account or linking your membership details before your order is placed. Description Table of Contents Product Details Click on the cover image above to read some pages of this book!
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One-Dimensional Linear Element. A Finite Element Example.
Element Matrices: Galerkin Formulation. Two-Dimensional Elements. Coordinate Systems.
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Two-Dimensional Field Equation. Torsion of Noncircular Sections.
Irrotational Flow. Heat Transfer by Conduction and Convection. Acoustical Vibrations. Axisymmetric Field Problems.