The present research is focused on the linear analysis of a spatial Bernoulli-Euler beam. Metrics of the reference and deformed configurations are rigorously defined with respect to the convective coordinate frame of reference. No higher order terms are neglected which makes the formulation ideally suited for analysis of arbitrarily curved spatial beams in the frame of finite (but small) strain theory. The well-known issue of nonorthogonality of local coordinate system at an arbitrary point of a spatial beam is solved by the introduction of a new coordinate line that is orthogonal to the normal plane of the beam axis at each point. Generalized coordinates of the present model are translations of the beam axis and the angle of twist of a cro...
The present paper investigates the use of different knot placement techniques for isogeometric analy...
We present a curved beam element based on Timoshenko model and NURBS (Non- Uniform Rational B-Splin...
For defining geometry and displacement of arbitrary curved beam in Euclidean E3 space, using simple ...
The present research is focused on the linear analysis of a spatial Bernoulli-Euler beam. Metrics of...
The present study elucidates linear static analysis for plane beam structures using the isogeometric...
Linear static analysis of arbitrarily curved beams is considered. Metric of a Bernoulli-Euler beam i...
A novel rotation-free isogeometric formulation of in-plane dynamic analysis of an arbitrarily curved...
In this paper the linear free vibration analysis of an arbitrarily curved spatial Bernoulli – Euler ...
In this paper dynamic analysis of a curved Bernoulli – Euler beam subjected to a moving load is pres...
This paper deals with the linear free vibration analysis of Bernoulli–Euler and Rayleigh curved beam...
The current development of the isogeometric approach in various fields of mechanics is explained by ...
In this paper, linear transient analysis of spatial curved Bernoulli – Euler beam with circular cros...
Abstract: The Isogeometric analysis is a computational geometry based on a series of polynomial func...
A curved beam element based on the Timoshenko model and non-uniform rational B-splines (NURBS) inter...
The Bernoulli–Euler and Timoshenko’s theory of arbitrary curved beam is derived in the system of NUR...
The present paper investigates the use of different knot placement techniques for isogeometric analy...
We present a curved beam element based on Timoshenko model and NURBS (Non- Uniform Rational B-Splin...
For defining geometry and displacement of arbitrary curved beam in Euclidean E3 space, using simple ...
The present research is focused on the linear analysis of a spatial Bernoulli-Euler beam. Metrics of...
The present study elucidates linear static analysis for plane beam structures using the isogeometric...
Linear static analysis of arbitrarily curved beams is considered. Metric of a Bernoulli-Euler beam i...
A novel rotation-free isogeometric formulation of in-plane dynamic analysis of an arbitrarily curved...
In this paper the linear free vibration analysis of an arbitrarily curved spatial Bernoulli – Euler ...
In this paper dynamic analysis of a curved Bernoulli – Euler beam subjected to a moving load is pres...
This paper deals with the linear free vibration analysis of Bernoulli–Euler and Rayleigh curved beam...
The current development of the isogeometric approach in various fields of mechanics is explained by ...
In this paper, linear transient analysis of spatial curved Bernoulli – Euler beam with circular cros...
Abstract: The Isogeometric analysis is a computational geometry based on a series of polynomial func...
A curved beam element based on the Timoshenko model and non-uniform rational B-splines (NURBS) inter...
The Bernoulli–Euler and Timoshenko’s theory of arbitrary curved beam is derived in the system of NUR...
The present paper investigates the use of different knot placement techniques for isogeometric analy...
We present a curved beam element based on Timoshenko model and NURBS (Non- Uniform Rational B-Splin...
For defining geometry and displacement of arbitrary curved beam in Euclidean E3 space, using simple ...