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- W1593558392 abstract "Unsteady natural convection inside a triangular cavity is studied. The cavity is filled with a saturated porous medium has a non-isothermal left inclined wall while the bottom surface is isothermally heated and the right inclined surface is isothermally cooled. Internal heat generation is also considered, which is dependent on the fluid temperature. The governing equations are solved numerically by the finite volume method. The Prandtl number of the fluid is chosen to be~$0.7$ (air) whereas the aspect ratio and the Rayleigh number are~$0.5$ and~$10^5$, respectively. The effect of heat generation on the fluid flow and heat transfer is presented in terms of streamlines and isotherms. The rate of heat transfer through the three surfaces of the enclosure is also presented. References Ostrach, S., Natural convection in enclosures, in: J.P. Hartnett, H. Irving (Eds.), Adv. Heat Transfer, 8 (1972) 161--227. doi:10.1016/S0065-2717(08)70039-X S. Ostrach, Natural convection in enclosures, ASME J. Heat Transfer, 110 (1988) 1175--1190. doi:10.1115/1.3250619 G. Shiralkar, C. Tien, A Numerical study of the effect of a vertical temperature difference imposed on a horizontal enclosure, Numer. Heat Transfer 5 (1982) 185--197. doi:10.1080/10407798208547013 M. November, M. W. Nansteel, Natural convection in a rectangular enclosure heated from below and cooled along one surface, Internat. J. Heat Mass Transfer 30 (1987) 2433--2440. doi:10.1016/0017-9310(87)90233-X J. D. Nicolas, M. W. Nansteel, Natural convection in a rectangular enclosure with partial heating on the lower surface; experimental results, Int. J. Heat Mass Transfer 36 (1993) 4067--4071. doi:10.1016/0017-9310(93)90156-Z M. M. Ganzarolli, L. F. Milanez, Natural convection in rectangular enclosures heated from below and symmetrically cooled from the sides, Int. J. Heat Mass Transfer 38 (1995) 1063--1073. doi:10.1016/0017-9310(94)00217-J K. Velusamy, T. Sundarajan, K. N. Seetharamn, Laminar natural convection in an enclosure formed by non-isothermal walls, in: Proc. 11th Internat. Conf. Heat Transfer, Korea, 3 (1998) 459--464. M. A. Hossain, M. Wilson, Natural convection flow in a fluid-saturated porous medium enclosed by non-isothermal walls with heat generation, Int. J. Therm. Sci., 41 (2002) 447--454. doi:10.1016/S1290-0729(02)01337-6 T. Basak, S. Roy, C. Thirumalesha, Finite element analysis of natural convection in a triangular enclosure: Effects of various thermal boundary conditions, Chemical Engineering Science, 62 (2007) 2623--2640. doi:10.1016/j.ces.2007.01.053 P. Cheng, Heat transfer in geothermal systems, Adv. Heat Transfer 14 (1979) 1--105. doi:10.1016/S0065-2717(08)70085-6 S. C. Saha, M. M. K. Khan, A review of natural convection and heat transfer in attic-shaped space, Energy and Buildings, 43 (2011) 2564--2571. doi:10.1016/j.enbuild.2011.06.020 A. Bejan, D. Poulikakos, Natural convection in an attic shaped space filled with porous material, J. Heat Transfer, 104 (1982) 241--247. doi:10.1115/1.3245079 Y. Varol, H. F. Oztop, A. Varol, Free convection in porous media filled right-angle triangular enclosures, Int. Comm. Heat Mass Trans., 33 (2006) 1190--1197. doi:10.1016/j.icheatmasstransfer.2006.08.008 Y. Varol, H. F. Oztop, A. Varol, Effects of thin fin on natural convection in porous triangular enclosures, Int. J. Therm. Sci., 46 (2007) 1033--1045. doi:10.1016/j.ijthermalsci.2006.11.001 Y. Varol, H. F. Oztop, A. Varol, Natural convection in porous triangular enclosures with a solid adiabatic fin attached to the horizontal wall, Int. Comm. Heat Mass Trans., protect unhbox voidb@x hbox {34} (2007) 19--27. doi:10.1016/j.icheatmasstransfer.2006.09.004, S. C. Saha, Y. T. Gu, M. M. Molla, S. Siddiqa, M. A. Hossain, Natural convection from a vertical plate embedded in a stratified medium with uniform heat source, Desalination and Water Treatment, 44 (2012) 7--14. doi:10.1080/19443994.2012.691696" @default.
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- W1593558392 title "Free convection in a triangular enclosure with fluid-saturated porous medium and internal heat generation" @default.
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