TY - JOUR
T1 - Thermal and solutal energy transport analysis in entropy generation of hybrid nanofluid flow over a vertically rotating cylinder
AU - Ahmad, Shafiq
AU - Ahammad, N. Ameer
AU - Khan, Muhammad Naveed
AU - Algehyne, Ebrahem A.
AU - Tag-Eldin, Elsayed
AU - Gepreel, Khaled A.
AU - Guedri, Kamel
AU - Galal, Ahmed M.
N1 - Publisher Copyright:
Copyright © 2022 Ahmad, Ahammad, Khan, Algehyne, Tag-Eldin, Gepreel, Guedri and Galal.
PY - 2022/9/26
Y1 - 2022/9/26
N2 - An investigation of an axisymmetric mixed convective boundary layer flow of silver-titanium dioxide/water ((Formula presented.)) hybrid nanofluid towards vertically and rotating stretching cylinder with entropy generation is conducted. The Cattaneo-Christov theory and joule heating effect are used to analyze the features of thermal energy. Moreover, the magnetic impact and convective boundary conditions on the vertical surface also considered in the current investigation. The developing equations for momentum, energy and entropy generation are modelled and by the usage of similarity variables to transform into the system of nonlinear ordinary differential equations (ODEs). The solutions of nonlinear ODEs are obtained numerically with the assistance of BVP4C MATLAB built-in scheme. The graphical consequences and relevant physical reasoning regarding the velocity, temperature, and concentration profiles are discussed. It is noteworthy that strong estimation of buoyancy ratio and mixed convection parameter enhances axial velocity, but the swirl velocity is diminished. The fluid temperature and concentration both are diminished due to thermal and solutal stratification effects. It is also seen that thermal Biot and Eckert numbers enhance the temperature distribution. Further, the Reynold number improves entropy generation.
AB - An investigation of an axisymmetric mixed convective boundary layer flow of silver-titanium dioxide/water ((Formula presented.)) hybrid nanofluid towards vertically and rotating stretching cylinder with entropy generation is conducted. The Cattaneo-Christov theory and joule heating effect are used to analyze the features of thermal energy. Moreover, the magnetic impact and convective boundary conditions on the vertical surface also considered in the current investigation. The developing equations for momentum, energy and entropy generation are modelled and by the usage of similarity variables to transform into the system of nonlinear ordinary differential equations (ODEs). The solutions of nonlinear ODEs are obtained numerically with the assistance of BVP4C MATLAB built-in scheme. The graphical consequences and relevant physical reasoning regarding the velocity, temperature, and concentration profiles are discussed. It is noteworthy that strong estimation of buoyancy ratio and mixed convection parameter enhances axial velocity, but the swirl velocity is diminished. The fluid temperature and concentration both are diminished due to thermal and solutal stratification effects. It is also seen that thermal Biot and Eckert numbers enhance the temperature distribution. Further, the Reynold number improves entropy generation.
KW - Ag-TiO/HO hybrid nanofluid
KW - Cattaneo-Christov double diffusion theory
KW - convective boundary conditions
KW - entropy generation
KW - joule heating
KW - vertical rotating cylinder
UR - http://www.scopus.com/inward/record.url?scp=85139519753&partnerID=8YFLogxK
U2 - 10.3389/fphy.2022.988407
DO - 10.3389/fphy.2022.988407
M3 - Article
AN - SCOPUS:85139519753
SN - 2296-424X
VL - 10
JO - Frontiers in Physics
JF - Frontiers in Physics
M1 - 988407
ER -