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Finite element analysis of rotating ...
~
Ganguli, Ranjan.
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Finite element analysis of rotating beams = physics based interpolation /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Finite element analysis of rotating beams/ by Ranjan Ganguli.
Reminder of title:
physics based interpolation /
Author:
Ganguli, Ranjan.
Published:
Singapore :Springer Singapore : : 2017.,
Description:
xii, 283 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
Introduction -- Stiff String Basis Functions -- Rational Interpolation Functions -- Fourier-p Superelement -- Physics Based Basis Functions -- Collocation Approach -- Rotor Blade Finite Element -- Spectral Finite Element Method -- Violin String Shape Functions -- Appendix A: Stiffness Matrix -- Appendix B: MATLAB Code -- Appendix C: Governing Equation for Rotating Timoshenko Beam.
Contained By:
Springer eBooks
Subject:
Finite element method. -
Online resource:
http://dx.doi.org/10.1007/978-981-10-1902-9
ISBN:
9789811019029
Finite element analysis of rotating beams = physics based interpolation /
Ganguli, Ranjan.
Finite element analysis of rotating beams
physics based interpolation /[electronic resource] :by Ranjan Ganguli. - Singapore :Springer Singapore :2017. - xii, 283 p. :ill. (some col.), digital ;24 cm. - Foundations of engineering mechanics,1612-1384. - Foundations of engineering mechanics..
Introduction -- Stiff String Basis Functions -- Rational Interpolation Functions -- Fourier-p Superelement -- Physics Based Basis Functions -- Collocation Approach -- Rotor Blade Finite Element -- Spectral Finite Element Method -- Violin String Shape Functions -- Appendix A: Stiffness Matrix -- Appendix B: MATLAB Code -- Appendix C: Governing Equation for Rotating Timoshenko Beam.
This book addresses the solution of rotating beam free-vibration problems using the finite element method. It provides an introduction to the governing equation of a rotating beam, before outlining the solution procedures using Rayleigh-Ritz, Galerkin and finite element methods. The possibility of improving the convergence of finite element methods through a judicious selection of interpolation functions, which are closer to the problem physics, is also addressed. The book offers a valuable guide for students and researchers working on rotating beam problems - important engineering structures used in helicopter rotors, wind turbines, gas turbines, steam turbines and propellers - and their applications. It can also be used as a textbook for specialized graduate and professional courses on advanced applications of finite element analysis.
ISBN: 9789811019029
Standard No.: 10.1007/978-981-10-1902-9doiSubjects--Topical Terms:
579714
Finite element method.
LC Class. No.: TA347.F5
Dewey Class. No.: 518.25
Finite element analysis of rotating beams = physics based interpolation /
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Introduction -- Stiff String Basis Functions -- Rational Interpolation Functions -- Fourier-p Superelement -- Physics Based Basis Functions -- Collocation Approach -- Rotor Blade Finite Element -- Spectral Finite Element Method -- Violin String Shape Functions -- Appendix A: Stiffness Matrix -- Appendix B: MATLAB Code -- Appendix C: Governing Equation for Rotating Timoshenko Beam.
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This book addresses the solution of rotating beam free-vibration problems using the finite element method. It provides an introduction to the governing equation of a rotating beam, before outlining the solution procedures using Rayleigh-Ritz, Galerkin and finite element methods. The possibility of improving the convergence of finite element methods through a judicious selection of interpolation functions, which are closer to the problem physics, is also addressed. The book offers a valuable guide for students and researchers working on rotating beam problems - important engineering structures used in helicopter rotors, wind turbines, gas turbines, steam turbines and propellers - and their applications. It can also be used as a textbook for specialized graduate and professional courses on advanced applications of finite element analysis.
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