4.5 Article

A passive control of magnetohydrodynamic flow of a blood-based Casson hybrid nanofluid over a convectively heated bi-directional stretching surface

Related references

Note: Only part of the references are listed.
Article Mathematics, Interdisciplinary Applications

Impacts of Casson Model on Hybrid Nanofluid Flow over a Moving Thin Needle with Dufour and Soret and Thermal Radiation Effects

Vinodh Srinivasa Reddy et al.

Summary: This study used a novel Casson model to investigate the flow of hybrid Al2O3-Cu/ethylene glycol nanofluid over a moving thin needle under MHD, Dufour-Soret effects, and thermal radiation. The governing partial differential equations were transformed into ordinary differential equations using appropriate transformations, and these equations were solved analytically using HAM. The study analyzed the effects of various parameters on velocity, temperature, and concentration profiles, and also discussed the impacts of the Casson parameter and the inclusion of nanoparticles on skin friction coefficient and heat transfer rate. The article also entangled local skin friction, a local Nusselt number, and a local Sherwood number for multiple parameters.

MATHEMATICAL AND COMPUTATIONAL APPLICATIONS (2023)

Article Nanoscience & Nanotechnology

Hybrid Nanofluid Flow of Non-Newtonian Casson Fluid for the Analysis of Entropy Through a Permeable Medium

S. R. Mishra et al.

Summary: This study proposes a method based on magnetohydrodynamic (MHD) flow to enhance heat transfer properties in a rotating channel. The irreversibility entropy analysis of the non-Newtonian Casson hybrid nanofluid is investigated, and numerical solutions for velocity and temperature profiles are obtained. The findings suggest that an increase in rotation retards the thickness of the primary velocity boundary surface, but significant improvements in shear rate and heat transfer rate are observed for higher magnetic and rotation parameters.

JOURNAL OF NANOFLUIDS (2022)

Article Thermodynamics

A Three-Dimensional Non-Newtonian Magnetic Fluid Flow Induced Due to Stretching of the Flat Surface With Chemical Reaction

R. J. Punith Gowda et al.

Summary: This analysis studies the three-dimensional flow of non-Newtonian liquid, with a focus on the characteristics of an incompressible magnetic liquid. The study takes into account thermal radiation and chemical reaction impacts on heat and mass transport. The obtained ordinary differential equations are solved using a numerical method, and the effects of various parameters on liquid flow, heat, and mass transport are illustrated through graphs.

JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME (2022)

Article Thermodynamics

Impact of exponential form of internal heat generation on water-based ternary hybrid nanofluid flow by capitalizing non-Fourier heat flux model

K. Sarada et al.

Summary: This article investigates the convective boundary layer flow of ternary hybrid nanofluid (water-based graphene-CNT-Silver) over a curved stretching sheet with activation energy, considering the non-Fourier heat flux model. The results reveal the influence of various parameters on thermal, concentration, and velocity profiles. The heat transport in ternary hybrid nanoliquid increases with higher thermophoresis and Brownian motion parameters, while the Biot number positively affects the thermal profile and the Schmidt number and Stefan blowing parameter values reduce mass transport.

CASE STUDIES IN THERMAL ENGINEERING (2022)

Article Thermodynamics

Non-Newtonian based micropolar fluid flow over nonlinear starching cylinder under Soret and Dufour numbers effects

Aamir Abbas Khan et al.

Summary: This analysis considers the flow of non-Newtonian micropolar fluid on a nonlinear stretching cylinder, taking into account the impacts of Soret and Dufour effects, as well as the influences of Bioconvection and gyrotactic microorganisms. By applying boundary layer theory and similarity transformations, the partial differential equations are transformed into a dimensionless system that is solved numerically using bvp5c. The study highlights the effects of fluid flow on the cylinder and physical parameters through graphs and tables, showing that the velocity function is enhanced with an increase in the viscoelastic parameter while the temperature and concentration function exhibit opposite behavior. Additionally, the concentration distribution improves with an increase in the n and Sc parameters, while the temperature distribution shows opposite behavior. The thickness of the micropolar fluid decreases with increasing Reynolds number values.

INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER (2021)

Review Green & Sustainable Science & Technology

A comprehensive review on the application of hybrid nanofluids in solar energy collectors

Qingang Xiong et al.

Summary: Hybrid nanofluids have shown promise in solar energy collectors due to their enhanced thermal conductivity and efficiency. Studies have reported significant improvements in thermal and optical performance of solar thermal energy devices operating on hybrid nanofluids.

SUSTAINABLE ENERGY TECHNOLOGIES AND ASSESSMENTS (2021)

Article Engineering, Mechanical

Comprehensive study of thermophoretic diffusion deposition velocity effect on heat and mass transfer of ferromagnetic fluid flow along a stretching cylinder

R. Naveen Kumar et al.

Summary: This study discusses the flow of a ferromagnetic viscous liquid with thermophoretic particle deposition over a stretching cylinder, taking into account a uniform heat source/sink parameter. The effects of ferromagnetic interaction parameter, heat source/sink parameter, thermophoretic parameter, and magnetic dipole on the velocity, temperature, and concentration fields are examined in detail. Results show that an increase in ferromagnetic interaction parameter leads to increased thermal gradient, while a converse trend is observed for inclined values of the heat source/sink parameter. The imposition of magnetic dipole and particle deposition have diminishing effects on the rates of heat and mass transfers.

PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART E-JOURNAL OF PROCESS MECHANICAL ENGINEERING (2021)

Article Mathematics, Interdisciplinary Applications

Development of mathematical modeling of multi-phase flow of Casson rheological fluid: Theoretical approach

Mubbashar Nazeer et al.

Summary: This article presents a theoretical study on a rheological fluid suspended with two types of nanoparticles through a steep channel, using the non-Newtonian Casson fluid model as the base liquid. The mathematical modeling results in a closed-form solution for the nonlinear partial differential equations, and shows that Hafnium particles gain more momentum than crystal particles in multiphase flows. This study also compares Casson multiphase suspensions with Newtonian fluid models, and indicates the suitability of Casson multiphase suspensions for coating purposes in various engineering applications.

CHAOS SOLITONS & FRACTALS (2021)

Article Mathematics, Applied

Exploration of Arrhenius activation energy on hybrid nanofluid flow over a curved stretchable surface

R. S. Varun Kumar et al.

Summary: Heat transfer is crucial for the success of multi-scale production, with thermal properties achieved through continuous phase liquids. Increasing the values of Biot number and heat source/sink parameter can improve thermal gradient. Hybrid nanofluid demonstrates higher heat transfer rate compared to nanoliquid for improved values of heat source/sink parameter.

ZAMM-ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND MECHANIK (2021)

Article Mathematics, Applied

KKL correlation for simulation of nanofluid flow over a stretching sheet considering magnetic dipole and chemical reaction

R. J. Punith Gowda et al.

Summary: This study investigates the flow of ferromagnetic nanofluid past a flat elastic sheet with porous medium and chemical reaction. Results indicate that increasing the ferromagnetic interaction parameter decreases the velocity gradient, while increasing the porosity parameter slows down the rate of heat transfer and velocity gradient.

ZAMM-ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND MECHANIK (2021)

Article Computer Science, Information Systems

Numerical Treatment of MHD Flow of Casson Nanofluid via Convectively Heated Non-Linear Extending Surface with Viscous Dissipation and Suction/Injection Effects

Hammad Alotaibi et al.

Summary: This paper investigates the impact of heat absorption and suction on magnetohydrodynamic boundary-layer flow of Casson nanofluid on a nonlinear stretching surface. Numerical computations using Maple 15 software show the influence of control parameters on nanoparticle concentration profiles, temperature, and flow velocity. The results are in excellent agreement with previous studies, indicating an enhancement in heat and mass transfer rates with increasing power-index and suction parameters, while being reduced with higher Casson and heat absorption parameters.

CMC-COMPUTERS MATERIALS & CONTINUA (2021)

Article Physics, Multidisciplinary

Free surface film flow of an unsteady second grade fluid over a stretching sheet with surface tension linearly varies with temperature

Sajid Rehman et al.

PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS (2020)

Article Engineering, Multidisciplinary

Three-Dimensional MHD Mixed Convection Flow of Casson Nanofluid with Hall and Ion Slip Effects

Wubshet Ibrahim et al.

MATHEMATICAL PROBLEMS IN ENGINEERING (2020)

Article Computer Science, Information Systems

Impact of Volume Fraction and Hall Effect on Two-Phase Radiative Dusty Nanofluid Flow Over a Stretching Sheet

Abdullah Dawar et al.

IEEE ACCESS (2019)

Article Engineering, Multidisciplinary

Thin film flow of a second grade fluid in a porous medium past a stretching sheet with heat transfer

Noor Saeed Khan et al.

ALEXANDRIA ENGINEERING JOURNAL (2018)

Article Engineering, Multidisciplinary

MHD non-Newtonian fluid flow over a slendering stretching sheet in the presence of cross-diffusion effects

M. Jayachandra Babu et al.

ALEXANDRIA ENGINEERING JOURNAL (2016)

Article Chemistry, Physical

On model for three-dimensional flow of nanofluid: An application to solar energy

Junaid Ahmad Khan et al.

JOURNAL OF MOLECULAR LIQUIDS (2014)

Article Engineering, Multidisciplinary

MHD three-dimensional Casson fluid flow past a porous linearly stretching sheet

S. Nadeem et al.

ALEXANDRIA ENGINEERING JOURNAL (2013)

Article Mathematics, Applied

Three-dimensional flow of a Jeffery fluid over a linearly stretching sheet

T. Hayat et al.

COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION (2012)

Article Engineering, Multidisciplinary

MHD flow of a Casson fluid over an exponentially shrinking sheet

S. Nadeem et al.

SCIENTIA IRANICA (2012)

Article Thermodynamics

Convective heat transfer in the flow of viscous Ag-water and Cu-water nanofluids over a stretching surface

K. Vajravelu et al.

INTERNATIONAL JOURNAL OF THERMAL SCIENCES (2011)

Article Thermodynamics

Boundary-layer flow of a nanofluid past a stretching sheet

W. A. Khan et al.

INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER (2010)

Article Thermodynamics

MHD mixed convection from a vertical plate embedded in a porous medium with a convective boundary condition

O. D. Makinde et al.

INTERNATIONAL JOURNAL OF THERMAL SCIENCES (2010)

Article Mathematics, Applied

A similarity solution for laminar thermal boundary layer over a flat plate with a convective surface boundary condition

Abdul Aziz

COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION (2009)

Article Mathematics, Applied

Notes on the homotopy analysis method: Some definitions and theorems

Shijun Liao

COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION (2009)