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BASIC EQUATIONS OF CONVECTIVE
BASIC INFORMATION ON THE THEORY
HEAT TRANSFER IN LAMINAR
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A. F. Polyakov air flow body forces body-force effects boundary condition boundary layer buoyancy forces calculated circular pipe combined Iff convection const constant qw coordinates correlation cross section density stratification described dimensionless effect of buoyancy equation experimental data Figure flow and heat fluid forced convection forced flow free convection generatrix given in Fig Gq/Gqth Gqth Grashof number heat flux heat transfer coefficient heated pipe horizontal hydrodynamic isothermal laminar flow Mass Transfer maximum mean velocity mixed convection Nusselt number obtained parameters plane channel regime Reynolds number Richardson number secondary flow shear stress shown in Fig skin friction stable density supercritical pressures surface temperature and velocity temperature distribution temperature profiles thermal conductivity thermal entry region thermogravity tion transport of heat tube turbulent energy turbulent flow turbulent heat turbulent transport universal coordinates unstable stratification velocity and temperature velocity distribution velocity profile vertical viscosity wall temperature