[1] V. A. F. Costa and A. M. Raimundo, “Steady mixed convection in a differentially heated square enclosure with an active
rotating circular cylinder,” International Journal of Heat and Mass Transfer, vol. 53, pp. 1208–1219, 2010.
[2] T.H. Hsu and S.P. How, “Mixed convection in a partially divided rectangular enclosure,” Numerical Heat Transfer, Part A,
vol. 31, pp. 655-683, 1997.
[3] O. Manca, S. Nardini, and K. Vafai, “Experimental investigation of mixed convection in a channel with an open cavity,”
Numerical Heat Transfer, Part A, vol. 19, pp. 53-68, 2006.
[4] A. Raji and M. Hasnaoui, “Mixed convection heat transfer in ventilated cavities with opposing and assisting flows,”
International Journal Computer-Aided Engineering. Software, vol. 17, no. 5, pp. 556–572, 2000.
[5] G. Gau and M. A. R. Sharif, “Mixed convection in rectangular cavities at various aspect ratios with moving isothermal
side walls and constant flux heat source on the bottom wall,” International Journal Thermal Science, vol. 43, pp. 465–
475, 2004.
[6] M. M. Billah, M. M. Rahman, and M. A. Uddin, “Mixed convection inside a ventilated cavity along with a centered heat
conducting horizontal circular cylinder,” Engineering e-Transaction, vol. 6, no. 1, pp. 62–69, 2011.
[7] S. Z. Shuja, B. S. Yilbas, and M.O. Iqbal, “Mixed convection in a square cavity due to heat generating rectangular body
effect of cavity exit port locations,” International Journal of Numerical Methods for Heat and Fluid flow, vol. 10, no. 8,
pp. 824–841, 2000.
[8] J.N. Reddy, An Introduction to Finite Element Analysis, McGraw-Hill, New-York, 1993.
[9] M. M. Rahman, M. A. Alim, and M. A.H. Mamun, “Finite element analysis of mixed convection in a rectangular cavity
with a heat-conducting horizontal circular cylinder,” Non-linear analysis: Modeling and Control, vol. 14, no. 2, pp. 217-
247, 2009.
[10] A. Kumar De and A. Dalal, “A numerical study of natural convection around a square, horizontal, heated cylinder placed
in an enclosure,” International journal Heat Mass Transfer, vol. 49, pp. 4608-4623, 2006.
[11] M. M. Rahman, M. Elias, and M. A. Alim, “Mixed convection flow in a rectangular ventilated cavity with a heat
conducting square cylinder at the center,” Journal of Engineering and Applied Sciences, vol. 4, no.5, pp. 20-29, 2009.
[12] A. J. Chamkha, “Hydro magnetic combined convection flow in a vertical lid- driven cavity with internal heat generation
or absorption,” Numerical Heat Transfer Part A, vol. 41, pp. 529-546, 2002.
[13] H. F. Oztop, Z. Zhao, and B. Yu, “Fluid flow due to combined convection in lid-driven enclosure having a circular body,”
International journal Heat and Fluid Flow, vol. 30, pp. 886–901, 2009.
[14] J. Y. Oh, M. Y. Ha, and K. C. Kim, “Numerical study of heat transfer and flow of natural convection in an enclosure with a
heat generating conducting body,” Numerical Heat Transfer, Part A, vol. 31, pp. 289-304, 1997.
[15] M. M. Rahman, R. Nasrin, and M. M. Billah, “Effect of Prandtl number on hydromagnetic mixed convection in a doublelid
driven cavity with a heat-generating obstacle,” Engineering e-Transaction, vol. 5, no. 2, pp. 90–96, 2010.
[16] M.U. Ahammad, M.M. Rahman, and M.L. Rahman, “Effect of inlet and outlet position in a ventilated cavity with a heat
generating square block,” Engineering e-Transaction, vol. 7, no. 2, pp. 107–115, 2012.
[17] M. M. Abo El-Nasr, M. A. Abidou, and H. A. Hussein, “Heat transfer characteristics of horizontal cylinder cooling under
single impinging water jet,” International Journal of Applied Sciences and Engineering Research, vol. 1, no. 2, pp. 287–
301, 2012.
[18] A. Veera Suneela Rani, Dr. V. Sugunamma, and N. Sandeep, “Radiation effects on convective heat and mass transfer
flow in a rectangular cavity,” International Journal of Innovation and Applied Studies, vol. 1, no. 1, pp. 118-152, 2012.
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