Effect of Buoyancy Force on the Flow Field in a Triangular Cavity

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Effect of Buoyancy Force on the Flow Field in a Triangular Cavity

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Abstract

In this paper, the effect of buoyancy force in a triangular enclosure are studied numerically. The governing differential equations are solved by using finite element method (weighted-residual method). Here the left wall of the triangle is assumed to be adiabatic, the right and horizontal wall are kept at cold and heated respectively. Also all the wall are assumed to be no-slip condition. The effective governing dimensionless parameters for this problem are Rayleigh number, Prandtl number and Hartmann number.

References

11 Cites in Article
  1. G De Vahl,I Davis,Jones (1983). Natural convection in a square cavity: a comparison exercise.
  2. S Ostrach (1988). Natural convection in enclosures.
  3. F Kulacki,R Goldstein (1972). Thermal convection in a horizontal fluid layer with uniform volumetric energy sources.
  4. F Kulacki,M Nagle (1975). Natural Convection in a Horizontal Fluid Layer With Volumetric Energy Sources.
  5. S Acharya,R Goldstein (1985). Natural Convection in an Externally Heated Vertical or Inclined Square Box Containing Internal Energy Sources.
  6. J Lee,R Goldstein (1988). An experimental study on natural convection heat transfer in an inclined square enclosure containing internal energy sources.
  7. F Hakan,Eiyad Oztop,Yasin Abu-Nada,Ali Varol,Chakma (2011). Natural convection in wavy enclosures with volumetric heat sources.
  8. S Tanmay Basak,Ch Roy,Thirumalesha (2007). Finite element analysis of natural convection in a triangular enclosure: Effects of various thermal boundary conditions.
  9. C Taylor,P Hood (1973). A numerical solution of the Navier-Stokes equations using the finite element technique.
  10. P Dechaumphai (1999). Introduction to the Finite Element Method.
  11. S Tanmay Basak,Ch Roy,Thirumalesha (2007). Finite element analysis of natural convection in a triangular enclosure: Effects of various thermal boundary conditions.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

Sayeda Ferdousi, Abdul Bhuiyan. 2014. "Effect of Buoyancy Force on the Flow Field in a Triangular Cavity". Global Journal of Science Frontier Research, Global Journal of Science Frontier Research - F: Mathematics & Decision GJSFR-F Volume 14 (GJSFR Volume 14 Issue F3).

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Journal Specifications

Crossref Journal DOI 10.17406/GJSFR

Print ISSN 0975-5896

e-ISSN 2249-4626

Keywords
Classification
GJSFR-F Classification MSC 2010: 57Q15
Version of record

v1.2

Issue date
July 17, 2014

Language
English
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Effect of Buoyancy Force on the Flow Field in a Triangular Cavity

Sayeda Ferdousi
Sayeda Ferdousi Bangladesh University of Engineering and Technology (BUET)
Abdul Bhuiyan
Abdul Bhuiyan