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Combined effects of magnetohydrodynamic and temperature dependent viscosity on peristaltic flow of Jeffrey nanofluid through a porous medium: Applications to oil refinement
Faculty
Science
Year:
2018
Type of Publication:
ZU Hosted
Pages:
59-62
Authors:
Waheed Mohamed Hassouna AbdulHameed
Staff Zu Site
Abstract In Staff Site
Journal:
American Journal of Epidemiology and Infectious Diseases Elsevier
Volume:
1
Keywords :
Combined effects , magnetohydrodynamic , temperature dependent viscosity , peristaltic
Abstract:
Viscosity is an essential parameter of fluid physical properties for assaying the heat transfer whendesigning a nanofluid system. For this purpose, this article investigates the effect of temperature dependent viscosity on the peristaltic flow of Jeffrey nanofluid in an asymmetric channel. For peristaltic literature, this model is progressed for the first time. This model of nonlinear partial differential equation is reformulated under the assumption of long wavelength and low Renolds number, and solved semi-analytically with the aid of multi-step differential transform method (Ms-DTM). Semi-analytical solutions have been evaluated for the pressure gradient as well as the distributions of velocity, temperature and nanoparticles concentration. Moreover, numerical integration is also operated to assess the expressions for pressure rise. Two cases of temperature dependent viscosity are deliberated. Case (I), all non-dimensional parameters that are functions of viscosity, have been regarded as constant within the flow. Case (II), these acknowledged parameters are then supposed to vary with temperature. We have made a detailed comparison between the two cases, and unrealistic results have been found, although case (II) accepts the experimental results. Excellent agreements are found between the semi-analytical results of the present paper and the existing published results, by taking ðb ¼ 0Þ and Da¼1. In case (II), decrement in variable viscosity parameter b cause to enlarge the temperature of fluid. As the molecules of oil, the increase in temperature acquire it more energy and make them moves more freely, which is the main idea of crude oil refinement, where crude oil is converted and refined into more desirable products such as petroleum naphtha, gasoline, kerosene and heating oil.
Author Related Publications
Waheed Mohamed Hassouna AbdulHameed, "Effect of Rotation and Initial Stress on Generalized Micropolar Thermoelastic Medium with Three-Phase-Lag", Comput. Theor. Nanosci., 2015
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Waheed Mohamed Hassouna AbdulHameed, "Effect of Magnetic Field on Generalized Thermoelastic Rotating Medium with Two Temperature Under Five Theories", Comput. Theor. Nanosci., 2015
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Waheed Mohamed Hassouna AbdulHameed, "The influence of thermal loading due to laser pulse on generalized micropolar thermoelastic solid with comparison of different theories", Multidiscipline Modeling in Materials and Structures, 2014
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Waheed Mohamed Hassouna AbdulHameed, "The effect of rotation on the problem of fiber-reinforced under generalized magnetothermoelasticity subject to thermal loading due to laser pulse: a comparison of different theories", Can. J. Phys. 92: 1002–1015 (2014) dx.doi, 2014
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Waheed Mohamed Hassouna AbdulHameed, "Influence of Gravity Field and Rotation on a Generalized Thermoelastic Medium using a Dual-Phase-Lag Model", http://www.researchpub.org/journal/jot/jot.html, 2013
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