TY - JOUR
T1 - Comparative analysis for radiative slip flow of magnetized viscous fluid with mixed convection features
T2 - Atangana-Baleanu and Caputo-Fabrizio fractional simulations
AU - Ijaz Khan, M.
AU - Raza, Ali
AU - Naseem, Maria
AU - Al-Khaled, Kamel
AU - Khan, Sami Ullah
AU - Khan, M. Imran
AU - El-Zahar, Essam Roshdy
AU - Malik, M. Y.
N1 - Funding Information:
The authors extend their appreciation to the Deanship of Scientific Research at King Khalid University , Abha 61413, Saudi Arabia for funding this work through research groups program under grant number RGP-1-36-42 .
Publisher Copyright:
© 2021
PY - 2021/12
Y1 - 2021/12
N2 - This novel investigation suggests interesting solution techniques regarding the magnetized flow of Casson material through a porous space confined by a vertical surface. The heat and mass pattern in non-Newtonian fluid flow is accessed by utilizing the slip features and thermal radiation applications. The solution of fractional dimensionless governing equations is obtained by using Laplace transformation and fractional derivative operators i.e. Atangana-Baleanu (AB) time-fractional derivative and Caputo-Fabrizio (CF) time-fractional derivative. Some limiting cases of velocity distribution, obtained by both AB-time fractional derivative and CF-time fractional derivative, are discussed. To enhance the innovation of this article, recent definitions of non-integer derivative operators are used to explore the numerical results under the conversation problem. The obtained results of velocity distribution are compared graphically and numerically by using different inverse techniques. A comprehensive analysis of employed solution techniques with limiting cases is worked out.
AB - This novel investigation suggests interesting solution techniques regarding the magnetized flow of Casson material through a porous space confined by a vertical surface. The heat and mass pattern in non-Newtonian fluid flow is accessed by utilizing the slip features and thermal radiation applications. The solution of fractional dimensionless governing equations is obtained by using Laplace transformation and fractional derivative operators i.e. Atangana-Baleanu (AB) time-fractional derivative and Caputo-Fabrizio (CF) time-fractional derivative. Some limiting cases of velocity distribution, obtained by both AB-time fractional derivative and CF-time fractional derivative, are discussed. To enhance the innovation of this article, recent definitions of non-integer derivative operators are used to explore the numerical results under the conversation problem. The obtained results of velocity distribution are compared graphically and numerically by using different inverse techniques. A comprehensive analysis of employed solution techniques with limiting cases is worked out.
KW - AB fractional derivative
KW - CF fractional derivative
KW - Closed-form solution
KW - MHD flow
KW - Time fractional operator
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U2 - 10.1016/j.csite.2021.101682
DO - 10.1016/j.csite.2021.101682
M3 - Article
AN - SCOPUS:85120679075
SN - 2214-157X
VL - 28
JO - Case Studies in Thermal Engineering
JF - Case Studies in Thermal Engineering
M1 - 101682
ER -