Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Dusty Nanofluid Past a Centrifugally Stretching Surface

View through CrossRef
This communication reports, the flow of Cu-water dusty nanofluid past a centrifugally stretching surface under the effect of second order slip and convective boundary conditions. The coupled nonlinear ordinary differential equations are get hold of from the partial differential equations which are derived from the conservation of momentum and energy of both nanofluid and dusty phases. Then, using apt resemblance transformation these ordinary differential equations were altered into a dimensionless form and then solved by bvp5c solver in Matlab software. The variation in velocity and temperature profiles of fluid and dusty phases for different parameters are thrash out in depth by figures and tables. The outcomes exhibit that the velocity profile of both fluid and dusty phases boot as the values of the dust particle volume fraction parameter is enlarged. Besides, the magnetic field parameter has similar effect on the velocity profile of both fluid and dusty phases. Also, the results illustrated that temperature profile of both Cu-water nanofluid and dusty particle phases are improved within an enhancement in the values of the temperature relaxation parameter, Cu-particle volume fraction, and Biot number. The results also confirm that for greater values of the magnetic field parameter the values of skin friction coefficient are enlarged for all values of the velocity ratio parameter.
Title: Dusty Nanofluid Past a Centrifugally Stretching Surface
Description:
This communication reports, the flow of Cu-water dusty nanofluid past a centrifugally stretching surface under the effect of second order slip and convective boundary conditions.
The coupled nonlinear ordinary differential equations are get hold of from the partial differential equations which are derived from the conservation of momentum and energy of both nanofluid and dusty phases.
Then, using apt resemblance transformation these ordinary differential equations were altered into a dimensionless form and then solved by bvp5c solver in Matlab software.
The variation in velocity and temperature profiles of fluid and dusty phases for different parameters are thrash out in depth by figures and tables.
The outcomes exhibit that the velocity profile of both fluid and dusty phases boot as the values of the dust particle volume fraction parameter is enlarged.
Besides, the magnetic field parameter has similar effect on the velocity profile of both fluid and dusty phases.
Also, the results illustrated that temperature profile of both Cu-water nanofluid and dusty particle phases are improved within an enhancement in the values of the temperature relaxation parameter, Cu-particle volume fraction, and Biot number.
The results also confirm that for greater values of the magnetic field parameter the values of skin friction coefficient are enlarged for all values of the velocity ratio parameter.

Related Results

Scattering characteristics of non-uniform dusty plasma targets based on Fokker-Planck-Landau collision model
Scattering characteristics of non-uniform dusty plasma targets based on Fokker-Planck-Landau collision model
Dusty plasma is a multi-particle system of dust particles suspended in plasma, which is generally composed of free electrons, ions, and dust particles. It is widely found in natura...
Thermal Performance of Nanofluid in Automobile Radiator
Thermal Performance of Nanofluid in Automobile Radiator
The use of nanofluids as a coolant in automobile radiators is getting more attention for the radiator’s better performance. Continuous development in automotive industries has incr...
Study on Enhanced Oil Recovery of Water-Based Nanofluid with Functional Silica Nanoparticles
Study on Enhanced Oil Recovery of Water-Based Nanofluid with Functional Silica Nanoparticles
Abstract Although application of nanofluids in enhanced oil recovery has been reported, the dispersibility of nanoparticles in water is one of the most difficult pro...
Performance Evaluation of Photovoltaic Thermal using MgO Nanofluid
Performance Evaluation of Photovoltaic Thermal using MgO Nanofluid
This study investigated the performance and efficiency of a photovoltaic thermal (PV/T) system utilizing a metal-based nanofluid, specifically MgO nanofluid. This research proposes...
Mathematical Model of Copper Nanofluid Flow Past a Spherical Enclosure
Mathematical Model of Copper Nanofluid Flow Past a Spherical Enclosure
The study examined mathematical models for describing the behavior of copper nanoparticles in water base fluid. Coupled hydrodynamic governing equations of momentum, energy and con...
Flow and Heat transfer of Hybrid nanofluid past an Exponentially Stretched Porous surface
Flow and Heat transfer of Hybrid nanofluid past an Exponentially Stretched Porous surface
This research looks at the flow and heat conduction properties of a hybrid nanofluid formed by an exponentially stretched porous surface. Over the last decade, there has been a sub...
Recent Review On Preparation Method, Mixing Ratio, and Heat Transfer Application Using Hybrid Nanofluid
Recent Review On Preparation Method, Mixing Ratio, and Heat Transfer Application Using Hybrid Nanofluid
Hybrid nanofluid is the extension from nanofluid that had been recently discovered, which can enhance heat transfer performance of heat transfer application. However, there were li...
Does stretching induce lasting increases in joint ROM? A systematic review
Does stretching induce lasting increases in joint ROM? A systematic review
AbstractBackground and PurposeStretching (that is, interventions that apply tension to soft tissues) induces increases in the extensibility of soft tissues, and is therefore widely...

Back to Top