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作 者:K.S.Rajendra Prasad Sathya Sai T.R.Seetharam Adithya Garimella
机构地区:[1]Department of Mechanical and Industrial Engineering,Manipal Institute of Technology Bengaluru,Manipal Academy of Higher Education,Manipal,576104,India [2]Sustainable Energy Technology,Faculty of Electrical Engineering,Mathematics and Computer Science,Delft University of Technology,Delft,2600 AA,Netherlands [3]Department of Mechanical Engineering,PES University,Bengaluru,560085,India
出 处:《Frontiers in Heat and Mass Transfer》2024年第3期889-917,共29页热量和质量传递前沿(英文)
摘 要:Numerical predictions are made for Laminar Forced convection heat transfer with and without buoyancy effects for Supercritical Nitrogen flowing over an isothermal horizontal flat plate with a heated surface facing downwards.Computations are performed by varying the value ofΔT from5 to 30 K and P_(∞)/P_(cr)ratio from1.1 to 1.5.Variation of all the thermophysical properties of supercritical Nitrogen is considered.The wall temperatures are chosen in such a way that two values of Tw are less than T∗(T*is the temperature at which the fluid has a maximum value of Cp for the given pressure),one value equal to T∗and two values greater than T∗.Three different values of U∞are used to obtain Re∞range of 3.6×10_(4)to 4.74×10^(5)for forced convection without buoyancy effects and Gr_(∞)/Re^(2)_(∞)range of 0.011 to 3.107 for the case where buoyancy effects are predominant.Six different forms of correlations are proposed based on numerical predictions and are compared with actual numerical predictions.It has been found that in all six forms of correlations,the maximum deviations are found to occur in those cases where the pseudocritical temperature TT∗lies between the wall temperature and bulk fluid temperature.
关 键 词:Supercritical nitrogen laminar flow numerical methods forced convection heat transfer isothermal horizontal surface
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