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Journal:   INTERNATIONAL JOURNAL OF INDUSTRIAL MATHEMATICS   SPRING 2013 , Volume 5 , Number 2; Page(s) 87 To 95.
 
Paper: 

Transient Free Convective Flow Of A Micropolar Fluid Between Two Vertical Walls

 
 
Author(s):  Ravi S.K.*, Singh A.K., Singh R.K., Chamkha A.J.
 
* DEPARTMENT OF MATHEMATICS, FACULTY OF SCIENCE, BANARAS HINDU UNIVERSITY, VARANASI, INDIA
 
Abstract: 
The aim of this paper is to present numerically the transport mechanism of an incompressible micropolar fluid between two vertical walls when the motion occurs due to the buoyancy force. The governing equations in non-dimensional form are solved numerically using the Matlab software. The obtained numerical solutions for the velocity and micro-rotation profiles are displayed using the graphs for various values of the vortex viscosity parameter and material parameter. It is found that the material parameter has retarding effect on the velocity of micropolar fluid and to make the flow steady state earlier for both thermal conditions. The effect of the vortex viscosity parameter is to decrease the steady state time of the velocity and micro-rotation.
 
Keyword(s): MICROPOLAR FLUID, MATLAB R2008A, VERTICAL WALLS, UNSTEADY FLOW
 
 
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APA: Copy

RAVI, S., & SINGH, A., & SINGH, R., & CHAMKHA, A. (2013). TRANSIENT FREE CONVECTIVE FLOW OF A MICROPOLAR FLUID BETWEEN TWO VERTICAL WALLS. INTERNATIONAL JOURNAL OF INDUSTRIAL MATHEMATICS, 5(2), 87-95. https://www.sid.ir/en/journal/ViewPaper.aspx?id=312231



Vancouver: Copy

RAVI S.K., SINGH A.K., SINGH R.K., CHAMKHA A.J.. TRANSIENT FREE CONVECTIVE FLOW OF A MICROPOLAR FLUID BETWEEN TWO VERTICAL WALLS. INTERNATIONAL JOURNAL OF INDUSTRIAL MATHEMATICS. 2013 [cited 2022May17];5(2):87-95. Available from: https://www.sid.ir/en/journal/ViewPaper.aspx?id=312231



IEEE: Copy

RAVI, S., SINGH, A., SINGH, R., CHAMKHA, A., 2013. TRANSIENT FREE CONVECTIVE FLOW OF A MICROPOLAR FLUID BETWEEN TWO VERTICAL WALLS. INTERNATIONAL JOURNAL OF INDUSTRIAL MATHEMATICS, [online] 5(2), pp.87-95. Available: https://www.sid.ir/en/journal/ViewPaper.aspx?id=312231.



 
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