Numerical study and chaotic oscillations for aerodynamic model of wind turbine via fractal and fractional differential operators
From MaRDI portal
Publication:6089116
DOI10.1002/num.22727OpenAlexW3115742262WikidataQ115397451 ScholiaQ115397451MaRDI QIDQ6089116
Publication date: 14 December 2023
Published in: Numerical Methods for Partial Differential Equations (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1002/num.22727
chaotic oscillationspermanent magnet synchronous generatoraerodynamic model of wind turbinefractal and fractional differential operators
Related Items (1)
Cites Work
- Multiple soliton solutions with chiral nonlinear Schrödinger's equation in (2+1)-dimensions
- Role of fractal-fractional derivative on ferromagnetic fluid via fractal Laplace transform: a first problem via fractal-fractional differential operator
- Fractal-fractional differentiation and integration: connecting fractal calculus and fractional calculus to predict complex system
- Complex dynamics in a permanent-magnet synchronous motor model
- Electroosmotic slip flow of Oldroyd-B fluid between two plates with non-singular kernel
- Mathematical analysis of dengue fever outbreak by novel fractional operators with field data
- Chaos and multiple attractors in a fractal-fractional Shinriki's oscillator model
- A fractional model of vertical transmission and cure of vector-borne diseases pertaining to the Atangana-Baleanu fractional derivatives
- Fractional logistic models in the frame of fractional operators generated by conformable derivatives
- On the Atangana–Baleanu Derivative and Its Relation to the Fading Memory Concept: The Diffusion Equation Formulation
- Mathematical analysis of memristor through fractal‐fractional differential operators: A numerical study
- A comparative analysis of electromechanical model of piezoelectric actuator through Caputo–Fabrizio and Atangana–Baleanu fractional derivatives
This page was built for publication: Numerical study and chaotic oscillations for aerodynamic model of wind turbine via fractal and fractional differential operators