A method is presented to compute the stochastic response of single-degree-of-freedom (SDOF) structural systems with fractional derivative damping, subjected to stationary and non-stationary inputs. Based on a few manipulations involving an appropriate change of variable and a discretization of the fractional derivative operator, the equation of motion is reverted to a set of coupled linear equations involving additional degrees of freedom, the number of which depends on the discretization of the fractional derivative operator. As a result of the proposed variable transformation and discretization, the stochastic analysis becomes very straightforward and simple since, based on standard rules of stochastic calculus, it is possible to h...
It is well known that the response of a linear system enforced by a Gaussian white noise is Markovia...
Several dynamic analysis in engineering problems involve structural elements that can be modeled as ...
The use of linear viscoelasticity together with fractional calculus in time-domain structural modeli...
A method is presented to compute the stochastic response of single-degree-of-freedom (SDOF) structur...
A numerical method is presented to compute the response of a viscoelastic Duffing oscillator with fr...
A method is presented to compute the non-stationary response of single-degree-of-freedom structural ...
In this paper an original method is presented to compute the stochastic response of singledegree- of...
Fractional oscillators have been recently proposed as damping devices under the configuration of Fra...
Fractional-order derivatives appear in various engineering applications including models for viscoel...
peer reviewedAbstract This paper studies the structural response of a single degree-of- freedom stru...
© 2019, Springer Nature B.V. An approximate analytical technique is developed for determining the no...
Fluid viscoelastic dampers are of great interest in different fields of engineering. Examples of the...
The main purpose of this thesis is to provide a new way to correctly perform stochastic analysis of ...
This study provides an efficient way to perform the dynamic analysis of multi-degree-of- freedom (MD...
The aim of the present paper is the dynamic analysis of Euler-Bernoulli beam, characterized by fract...
It is well known that the response of a linear system enforced by a Gaussian white noise is Markovia...
Several dynamic analysis in engineering problems involve structural elements that can be modeled as ...
The use of linear viscoelasticity together with fractional calculus in time-domain structural modeli...
A method is presented to compute the stochastic response of single-degree-of-freedom (SDOF) structur...
A numerical method is presented to compute the response of a viscoelastic Duffing oscillator with fr...
A method is presented to compute the non-stationary response of single-degree-of-freedom structural ...
In this paper an original method is presented to compute the stochastic response of singledegree- of...
Fractional oscillators have been recently proposed as damping devices under the configuration of Fra...
Fractional-order derivatives appear in various engineering applications including models for viscoel...
peer reviewedAbstract This paper studies the structural response of a single degree-of- freedom stru...
© 2019, Springer Nature B.V. An approximate analytical technique is developed for determining the no...
Fluid viscoelastic dampers are of great interest in different fields of engineering. Examples of the...
The main purpose of this thesis is to provide a new way to correctly perform stochastic analysis of ...
This study provides an efficient way to perform the dynamic analysis of multi-degree-of- freedom (MD...
The aim of the present paper is the dynamic analysis of Euler-Bernoulli beam, characterized by fract...
It is well known that the response of a linear system enforced by a Gaussian white noise is Markovia...
Several dynamic analysis in engineering problems involve structural elements that can be modeled as ...
The use of linear viscoelasticity together with fractional calculus in time-domain structural modeli...