Title
Upshot of radiative rotating Prandtl fluid flow over a slippery surface embedded with variable species diffusivity and multiple convective boundary conditions
Date Issued
01 May 2021
Access level
metadata only access
Resource Type
journal article
Author(s)
Publisher(s)
John Wiley and Sons Inc
Abstract
Here, modeling and computations are performed to explore the impact of variable molecular diffusivity, nonlinear thermal radiation, convective boundary conditions, momentum slip, and variable molecular diffusivity on Prandtl fluid past a stretching sheet. By using the compatible transformation, the partial differential equations regarding momentum, energy, and concentration are reformed into ordinary differential equations and furthermore, these equations are handled numerically via the shooting method. The behavior of intricate parameters that emerge during numerical simulation is displayed in the form of tables and graphs. These outcomes are supplemented with the information for the heat transfer rate and surface drag coefficients. It is perceived that an uplift in the temperature profile occurs by virtue of augmentation in the temperature convection parameter, and furthermore, mass fraction field escalates owing to an amplification in the chemical reaction coefficient.
Start page
2874
End page
2894
Volume
50
Issue
3
Language
English
OCDE Knowledge area
Química física
Física y Astronomía
Subjects
Scopus EID
2-s2.0-85096830364
Source
Heat Transfer
ISSN of the container
26884534
Sources of information:
Directorio de Producción Científica
Scopus