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Analysis of Sensitivity of Thermal Conductivity and Variable Viscosity on Wall Heat Flux in Flow of Casson Fluid over a Wedge
Author(s):
1. Ahmed Zeeshan: International Islamic University,Islamabad,Pakistan
2. Dilawar Hussain: International Islamic University, Islamabad, Pakistan
3. Zaheer Asghar: Pakistan Institute of Engineering and Applied Sciences,Nilore Islamabad, Pakistan
Abstract:
The author aims to discuss sensitivity of pertained parameter for a two dimensional convective wedge flow of non-Newtonian casson fluid having varying viscosity and conductivity over a semipermeable wedge surface using Response Surface Methodology (RSM). The transformed boundary layer equations forms partial differential equations which in turn are becomes a set of non-linear ordinary differential equations by use of regular perturbation method. These systems are solved numerically by the use of Matlab built in routine bvp4c respectively. The obtained results found quite comparable with those already presented in literature by other methodologies. We have made a statistical experimental design based on parametric ranges of governing parameters of the problem. We have then calculated the local wall shear stress and local wall heat flux numbers as responses for all combination of parameters in experimental design. Then we use RSM by using Central Composite Design (CCD) in order to develop a correlation between responses either or and governing parameters of the problem. After developing a best fitted response surfaces for each of the response variables we have performed a detailed sensitivity analysis for each of the response surface.
Page(s): 0-0
DOI: DOI not available
Published: Journal: First International Conference on Revamped Scientific Outlook of 21st Century (Abstract Book), Volume: 0, Issue: 0, Year: 2022
Keywords:
Sensitivity Analysis , Response Surface Method RSM , Porous Wedge , Perturbation Method , Variable Properties
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