Minimum entropy generation for laminar flow at constant wall temperature in a circular duct for optimum design
暂无分享,去创建一个
[1] A. Bejan. A Study of Entropy Generation in Fundamental Convective Heat Transfer , 1979 .
[2] Adrian Bejan,et al. Thermodynamic optimization of geometry in engineering flow systems , 2001 .
[3] T. Yilmaz,et al. General Equations for Pressure Drop for Laminar Flow in Ducts of Arbitrary Cross Sections , 1990 .
[4] Ahmet Z. Sahin,et al. Second Law Analysis of Laminar Viscous Flow Through a Duct Subjected to Constant Wall Temperature , 1998 .
[5] H. Oztop. Effective parameters on second law analysis for semicircular ducts in laminar flow and constant wall heat flux , 2005 .
[6] A. Bejan,et al. Entropy Generation Through Heat and Fluid Flow , 1983 .
[7] R. Shah,et al. Handbook of single-phase convective heat transfer , 1987 .
[8] S. Cheng,et al. A technique for predicting the thermal conductivity of suspensions, emulsions and porous materials , 1970 .
[9] A. Sahin,et al. The effect of variable viscosity on the entropy generation and pumping power in a laminar fluid flow through a duct subjected to constant heat flux , 1999 .
[10] Tuncay Yilmaz,et al. General equation for heat transfer for laminar flow in ducts of arbitrary cross-sections , 1993 .
[11] Adrian Bejan,et al. General criterion for rating heat-exchanger performance , 1978 .
[12] P. Nag,et al. Thermodynamic optimization of convective heat transfer through a duct with constant wall temperature , 1987 .
[13] Naresh Kumar,et al. Second law optimization of convective heat transfer through a duct with constant heat flux , 1989 .
[14] Adrian Bejan,et al. Thermodynamic optimization of cooling techniques for electronic packages , 1996 .
[15] Orhan Büyükalaca,et al. Optimum shape and dimensions of ducts for convective heat transfer in laminar flow at constant wall temperature , 2000 .
[16] A. Sahin,et al. A second law comparison for optimum shape of duct subjected to constant wall temperature and laminar flow , 1998 .