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- Title
Convective flow of a Maxwell hybrid nanofluid due to pressure gradient in a channel.
- Authors
Ali, Rizwan; Asjad, Muhammad Imran; Aldalbahi, Ali; Rahimi-Gorji, Mohammad; Rahaman, Mostafizur
- Abstract
In this work, analytical solution of hybrid Maxwell nanofluid of the vertical channel due to pressure gradient is discussed. By introducing dimensionless variables the governing equations with all levied initial and boundary conditions is converted into dimensionless form. Fractional model for Maxwell fluid is developed by Caputo time fractional differential operator by using the constitutive relation. The dimensionless expression for temperature and velocity are found using Laplace transform. Draw graphs of temperature and velocity by Mathcad software and discuss the behavior of flow parameters and the effect of fractional parameters. As a result, we have found by increasing the volumetric fraction of copper and alumina temperature increases and velocity decreases. Also, fluid flow properties showed dual behavior for small and large time, respectively, by increasing fractional parameters values.
- Subjects
FREE convection; PROPERTIES of fluids; FLUID flow; DIFFERENTIAL operators; PRESSURE; ANALYTICAL solutions; NANOFLUIDICS; CONVECTIVE flow
- Publication
Journal of Thermal Analysis & Calorimetry, 2021, Vol 143, Issue 2, p1319
- ISSN
1388-6150
- Publication type
Article
- DOI
10.1007/s10973-020-10304-x