The numerical solutions are obtained for rotating beams; the inclusion of centrifugal force term makes it difficult to get the analytical solutions. In this paper, we solve the free vibration problem of rotating Rayleigh beam using Chebyshev and Legendre polynomials where weak form of meshless local Petrov-Galerkin method is used. The equations which are derived for rotating beams result in stiffness matrices and the mass matrix. The orthogonal polynomials are used and results obtained with Chebyshev polynomials and Legendre polynomials are exactly the same. The results are compared with the literature and the conventional finite element method where only first seven terms of both the polynomials are considered. The first five natural frequ...
This book addresses the solution of rotating beam free-vibration problems using the finite element m...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
Free vibration problem of a rotating Euler-Bernoulli beam is solved with a truly meshless local Petr...
A rotating Timoshenko beam free vibration problem is solved using the meshless local Petrov-Galerkin...
A rotating Timoshenko beam free vibration problem is solved using the meshless local Petrov-Galerkin...
The quadratic B-spline finite element method yields mass and stiffness matrices which are half the s...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
Includes bibliographical references (pages 54-55)The purpose of this Graduate Project is to analyze ...
The meshless local Petrov-Galerkin approach [1], based on the local symmetric weak form (LSWF) and t...
A radial basis function implementation of the meshless local Petrov-Galerkin (MLPG) method is presen...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
A radial basis function implementation of the meshless local Petrov-Galerkin (MLPG) method is presen...
This book addresses the solution of rotating beam free-vibration problems using the finite element m...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
Free vibration problem of a rotating Euler-Bernoulli beam is solved with a truly meshless local Petr...
A rotating Timoshenko beam free vibration problem is solved using the meshless local Petrov-Galerkin...
A rotating Timoshenko beam free vibration problem is solved using the meshless local Petrov-Galerkin...
The quadratic B-spline finite element method yields mass and stiffness matrices which are half the s...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
Includes bibliographical references (pages 54-55)The purpose of this Graduate Project is to analyze ...
The meshless local Petrov-Galerkin approach [1], based on the local symmetric weak form (LSWF) and t...
A radial basis function implementation of the meshless local Petrov-Galerkin (MLPG) method is presen...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
A radial basis function implementation of the meshless local Petrov-Galerkin (MLPG) method is presen...
This book addresses the solution of rotating beam free-vibration problems using the finite element m...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...
This paper presents a dynamic model for the vibration of rotating Rayleigh beam. The governing diffe...