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Journal ArticleDOI

Effect of thick horizontal partial partition attached to one of the active walls of a differentially heated square cavity

A. Nag, +2 more
- 01 May 1994 - 
- Vol. 25, Iss: 5, pp 611-625
TLDR
In this paper, the effect of a partial horizontal partition plate of finite thickness attached to the heated vertical wall of a differentially heated square cavity has been studied numerically using the finite element method.
Abstract
The effect of a partial horizontal partition plate of finite thickness, attached to the heated vertical wall of a differentially heated square cavity, has been studied numerically using the finite element method. The partition thickness is varied from 0.5% of the height of the cavity to 10%. The partition is considered to be located at the middle of the hot wall of a width equivalent to 20% of the cavity width. It is observed that as the partition thickness is reduced, heat transfer across the cavity decreases at first, until a critical thickness of the partition plate is reached. Beyond this value, heat transfer increases as the thickness of the partition is further reduced. Streamline maps are found to be notably sensitive to the partition thickness. The effect of conductivity of the partition material on heat transfer is also studied. Except for material with poor thermal properties, conductivity of the partition is observed to have a negligible effect on heat transfer.

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Citations
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Journal ArticleDOI

Natural convection in cavities with a thin fin on the hot wall

TL;DR: In this paper, a numerical study has been carried out in differentially heated square cavities, which are formed by horizontal adiabatic walls and vertical isothermal walls, where a thin fin is attached on the active wall.
Journal ArticleDOI

Computation of combined natural-convection and radiation heat-transfer in a cavity having a square body at its center

TL;DR: In this article, the authors describe a numerical study of the radiation-natural convection interactions in a differentially-heated cavity with an inner body, and the SIMPLER algorithm for the pressure-velocity coupling is adopted.
Journal ArticleDOI

Numerical study of laminar natural convection inside square enclosure with single horizontal fin

TL;DR: In this paper, a numerical study for laminar natural convection inside a square enclosure with a single horizontal fin attached to its hot wall has been carried out The enclosure horizontal surfaces are adiabatic, the left wall is hot while the right one is cold The Prandtl number for the flow inside the enclosure is 071.
Journal ArticleDOI

Three-dimensional natural convection in finned cubical enclosures

TL;DR: In this article, the authors investigated three-dimensional natural convection of air in a cubical enclosure with a fin on the hot wall for Rayleigh numbers of 103-106 and concluded that fin of partial width is more effective in promoting heat transfer than a fin of full width.
Journal ArticleDOI

Partitioning of solar still for performance recovery: Experimental and numerical investigations with cost analysis

TL;DR: In this article, the effects of partitioning in solar stills on performance recovery are investigated experimentally and numerically, and a cost analysis is performed to investigate the modified still, economically.
References
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Journal ArticleDOI

Natural convection in a partially divided rectangular enclosure with an opening in the partition plate and isoflux side walls

TL;DR: In this paper, a numerical study was presented for natural convection in a two-dimensional, partially-divided, rectangular enclosure in which two side walls were maintained at uniform heat flux condition and the top and bottom walls were insulated.
Journal ArticleDOI

Natural convection in an enclosure with a vertical baffle

TL;DR: In this paper, a numerical study is made of natural convection in an enclosure with a vertical, finitely conducting baffle, and the predicted flow and isotherm patterns indicate the existence of strong thermal stratification in the baffle/cold wall region.
Journal ArticleDOI

End wall effects on thermal stratification and heat transfer in a vertical enclosure with offset partitions

TL;DR: In this article, the effect of end wall conditions on thermal stratification and heat transfer in a vertical enclosure with offset partitions has been studied by numerically solving the governing differential equations, and it is observed that with adiabatic end walls, the heat transfer from the vertical hot and cold walls is always greater.
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