Heat and mass transfer analysis of nanofluid flow over swirling cylinder with Cattaneo–Christov heat flux

被引:0
|
作者
P. Sudarsana Reddy
P. Sreedevi
Ali J. Chamkha
机构
[1] Rajeev Gandhi Memorial College of Engineering and Technology,Department of Mathematics
[2] Duy Tan University,Institute of Research and Development
[3] Duy Tan University,Institute of Theoretical and Applied Research (ITAR)
关键词
Thermophoresis; Chemical reaction; Magnetohydrodynamics; Cattaneo–christov heat flux; Swirling cylinder; Finite element method;
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学科分类号
摘要
Single-phase nanofluid heat and mass transfer futures over swirling cylinder with the impact of Cattaneo–Christov heat flux and slip effects is studied in this analysis. The effects thermophoresis, thermal radiation, Brownian motion and chemical reaction are also considered and the motion of the fluid is because of the torsional motion of the cylinder and these parameters. Suitable similarity transformations are implemented to simplify the fluid equations from partial differential equations to ordinary differential equations. The most powerful finite element technique is applied to solve the subsequent equations along with boundary conditions. Variations in the scatterings of swirling velocity, axial velocity, concentration and temperature with several pertinent parameters are portrayed through plots. Nusselt number, both components of skin friction coefficient and Sherwood number values are also examined in detail and are revealed in tables. Temperature sketches diminish in nanofluid region with rising values of heat flux relaxation number. It is detected that the nanofluids temperature deteriorates with augmenting values of temperature slip parameter. The present numerical code is validated with existing literature.
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页码:3453 / 3468
页数:15
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