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Essentials of the finite element method : for mechanical and structural engineers / Dimitrios G. Pavlou.

By: Material type: TextPublication details: London : Academic Press / Elsevier Inc., c.2015.Description: xv, 484 p. : col. ill. ; 24 cmISBN:
  • 0128023864 (pbk.)
Subject(s): DDC classification:
  • 22 620.1 PAV
Contents:
Overview of the finite element method FEM -- Mathematical Background -- Linear Spring Elements -- Bar Elements and hydraulic networks -- Trusses -- Beams -- Frames -- The Principle of Minimum Potential Energy for 1D Elements -- From Ideal to Real Plane Structural Elements: Elasticity Equations for 2D and 3D Solids -- The Principle of Minimum Potential Energy for 2D and 3D Elements -- Structural Dynamics -- Heat Transfer.
Summary: Fundamental coverage, analytic mathematics, and up-to-date software applications are hard to find in a single text on the finite element method (FEM). Dimitrios Pavlou's Essentials of the Finite Element Method: For Structural and Mechanical Engineers makes the search easier by providing a comprehensive but concise text for those new to FEM, or just in need of a refresher on the essentials. Essentials of the Finite Element Method explains the basics of FEM, then relates these basics to a number of practical engineering applications. Specific topics covered include linear spring elements,
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Cover image Item type Current library Home library Collection Shelving location Call number Materials specified Vol info URL Copy number Status Notes Date due Barcode Item holds Item hold queue priority Course reserves
Book - Borrowing Central Library First floor 620.1 PAV (Browse shelf(Opens below)) 25845 Available 000034484
Total holds: 0

Index : p. 479-484.

Includes bibliographical references.

Overview of the finite element method FEM -- Mathematical Background -- Linear Spring Elements -- Bar Elements and hydraulic networks -- Trusses -- Beams -- Frames -- The Principle of Minimum Potential Energy for 1D Elements -- From Ideal to Real Plane Structural Elements: Elasticity Equations for 2D and 3D Solids -- The Principle of Minimum Potential Energy for 2D and 3D Elements -- Structural Dynamics -- Heat Transfer.

Fundamental coverage, analytic mathematics, and up-to-date software applications are hard to find in a single text on the finite element method (FEM). Dimitrios Pavlou's Essentials of the Finite Element Method: For Structural and Mechanical Engineers makes the search easier by providing a comprehensive but concise text for those new to FEM, or just in need of a refresher on the essentials. Essentials of the Finite Element Method explains the basics of FEM, then relates these basics to a number of practical engineering applications. Specific topics covered include linear spring elements,

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