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Turbulent Prandtl number
Turbulent-Prandtl-Number.Pdf
A Two-Layer Turbulence Model for Simulating Indoor Airflow Part I
Turbulent Prandtl Number and Its Use in Prediction of Heat Transfer Coefficient for Liquids
Huq, P. and E.J. Stewart, 2008. Measurements and Analysis of the Turbulent Schmidt Number in Density
Nasa L N D-6439 Similar Solutions for Turbulent
Stability and Instability of Hydromagnetic Taylor-Couette Flows
Inclined Turbulent Thermal Convection in Liquid Sodium (Pr 0.009) in a Cylindrical Container of the Aspect Ratio One
Numerical Calculations of Laminar and Turbulent Natural Convection in Water in Rectangular Channels Heated and Cooled Isothermally on the Opposing Vertical Walls
Direct Numerical Simulation and Rans Modeling of Turbulent Natural Convection for Low Prandtl Number Fluids
Lecture 6. Monin-Obukhov Similarity Theory (Garratt 3.3) in This Lecture
Monin-Obukhov Similarity Theory for Modeling of Wind Turbine Wakes Under Atmospheric Stable Conditions: Breakdown and Modifications
Numerical Correlation for Natural Convective Flows in Isothermal
Optimization of the India Mark II Hand Pump to Create Maximum Cavitation For
Computational Simulation of Natural Convection of a Molten Core in Lower Head of a Pwr Pressure Vessel
Turbulence and Transport of Passive Scalar in Magnetohydrodynamic Channel Flow
A Logarithmic Turbulent Heat Transfer Model in Applications with Liquid Metals for Pr = 0.01–0.025
A Primer on Turbulence in Hydrology and Hydraulics: the Power of Dimensional Analysis
Numerical Investigations on the Impact of Turbulent Prandtl Number and Schmidt Number on Supersonic Combustion
Top View
Data-Driven Algebraic Models of the Turbulent Prandtl Number for Buoyancy-Affected Flow Near a Vertical Surface
Prandtl Number Effect on Heat Transfer Degradation in MHD Turbulent Shear Flows by Means of High-Resolution DNS
An Experimental and Numerical Investigation of Mixed Convection in Rectangular Enclosures
SAE World Congress & Exhibition
Mixing Characteristics in a Ventilated Room with Non-Isothermal Ceiling Air Supply H
Low Magnetic Reynolds Number Hypersonic MHD Flow Using High Order WENO Schemes
Optimization of Turbulent Prandtl Number in Turbulent, Wall Bounded Flows Donald Edward Bernard University of Vermont
Low Prandtl Number Thermal-Hydraulics*
Behaviour of Turbulent Prandtl and Schmidt Numbers in A
Analysis of Turbulent Natural Convection Heat Transfer in a Lower Plenum During External Cooling Using the COSMO Code
Non-Boussinesq Convection at Low Prandtl Numbers Relevant to the Sun
Self-Similar Mixing in Stratified Plane Couette Flow for Varying Prandtl
AN ANALYTICAL INVESTIGATION of FORCED CONVECTIVE HEAT TRANSFER to SUPERCRITICAL CARBON DIOXIDE FLOWING in a CIRCULAR DUCT Ashok
Cavitation of Mercury in a Centrifugal Pump
Evaluation of Turbulent Prandtl (Schmidt) Number Parameterizations for Stably Stratified Environmental Flows
Modeling for Non Isothermal Cavitation Using 4-Equation Models Eric Goncalv`Esda Silva
Cooling by Free Convection at High Rayleigh Number of Cylinders Positioned Above a Plane