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Differential Equations with Fractional Derivatives for Studying an Oscillator with Viscoelastic Damping
The paper considers differential equations with fractional derivatives used for describing the functioning of an oscillator with viscoelastic damping as well as diffusion processes. On the basis of a mathematical model with fractional derivatives, the present research deals with the qualitative parameter of the model to confirm the consistency of the given process with experimental data. An analysis of recent publications on this topic has been carried out and a method of obtaining a qualitative assessment of the obtained mathematical model is given. The presented approach was tested in a numerical experiment using the developed software.
Differential Equations with Fractional Derivatives for Studying an Oscillator with Viscoelastic Damping
The paper considers differential equations with fractional derivatives used for describing the functioning of an oscillator with viscoelastic damping as well as diffusion processes. On the basis of a mathematical model with fractional derivatives, the present research deals with the qualitative parameter of the model to confirm the consistency of the given process with experimental data. An analysis of recent publications on this topic has been carried out and a method of obtaining a qualitative assessment of the obtained mathematical model is given. The presented approach was tested in a numerical experiment using the developed software.
Differential Equations with Fractional Derivatives for Studying an Oscillator with Viscoelastic Damping
Lecture Notes in Civil Engineering
Akimov, Pavel (Herausgeber:in) / Vatin, Nikolai (Herausgeber:in) / Andreev, Alexander (Autor:in) / Aleroev, Temirkhan (Autor:in) / Khasambiev, Mohammad (Autor:in) / Aleroeva, Hedi (Autor:in)
09.11.2021
11 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
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