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Stability Analysis and Heat Transfer of Rayleigh - Bénard convection of Bingham Fluid through a vertical channel in a porous media


Article Information

Title: Stability Analysis and Heat Transfer of Rayleigh - Bénard convection of Bingham Fluid through a vertical channel in a porous media

Authors: J. Murali kumar, Y. V. K. Ravi Kumar, M. N. Rajasheker

Journal: ARPN Journal of Engineering and Applied Sciences

HEC Recognition History
Category From To
Y 2023-07-01 2024-09-30
Y 2022-07-01 2023-06-30
Y 2021-07-01 2022-06-30
X 2020-07-01 2021-06-30

Publisher: Khyber Medical College, Peshawar

Country: Pakistan

Year: 2021

Volume: 16

Issue: 9

Language: English

Categories

Abstract

The studies on gravity modulation are made for non-internal heating systems. However, in many practically important situations the material offers its own source of heat and this leads to a setting up of different convective flow in a fluid layer through internal heating. Here we considered Stability Analysis and Heat Transfer of Rayleigh convection in a Bingham Fluid in a porous media with heat generation is explored by making a linear stability investigation. The steadiness of a flat layer of liquid heat-generation from inside is analyzed by accepting time-period of the power within the sight of the source. The impact of gravity regulation on the beginning of Rayleigh-Bénard convection a standard perturbation technique is used to show up at an articulation to process the basic Rayleigh number for little and dimensionless inner heat source. The Venezian approach is embraced to acquire the eigen estimation of the issue. The buoyancy effects will occur when the Rayleigh number exceeds a certain critical values are found.


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