Thermodynamic and Transport Property Correlation Formulas for Equlibrium Air from 1,000 Degrees K to 15,000 Degrees K

Thermodynamic and Transport Property Correlation Formulas for Equlibrium Air from 1,000 Degrees K to 15,000 Degrees K
Title Thermodynamic and Transport Property Correlation Formulas for Equlibrium Air from 1,000 Degrees K to 15,000 Degrees K PDF eBook
Author John R. Viegas
Publisher
Pages 40
Release 1962
Genre Air
ISBN

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Thermodynamic and Transport Property Correlation Formulas for Equilibrium Air from 1,000°K to 15,000°K

Thermodynamic and Transport Property Correlation Formulas for Equilibrium Air from 1,000°K to 15,000°K
Title Thermodynamic and Transport Property Correlation Formulas for Equilibrium Air from 1,000°K to 15,000°K PDF eBook
Author John R. Viegas
Publisher
Pages 34
Release 1962
Genre
ISBN

Download Thermodynamic and Transport Property Correlation Formulas for Equilibrium Air from 1,000°K to 15,000°K Book in PDF, Epub and Kindle

Thermodynamic and Transport Property Correlation Formulas for Equlibrium Air from 1,000 Degrees K to 15,000 Degrees K

Thermodynamic and Transport Property Correlation Formulas for Equlibrium Air from 1,000 Degrees K to 15,000 Degrees K
Title Thermodynamic and Transport Property Correlation Formulas for Equlibrium Air from 1,000 Degrees K to 15,000 Degrees K PDF eBook
Author John R. Viegas
Publisher
Pages 34
Release 1962
Genre
ISBN

Download Thermodynamic and Transport Property Correlation Formulas for Equlibrium Air from 1,000 Degrees K to 15,000 Degrees K Book in PDF, Epub and Kindle

Tables of Thermodynamic Properties of Air in Chemical Equilibrium Including Second Virial Corrections from 1500°K to 15,000°K

Tables of Thermodynamic Properties of Air in Chemical Equilibrium Including Second Virial Corrections from 1500°K to 15,000°K
Title Tables of Thermodynamic Properties of Air in Chemical Equilibrium Including Second Virial Corrections from 1500°K to 15,000°K PDF eBook
Author Joseph Hilsenrath
Publisher
Pages 354
Release 1965
Genre Gases
ISBN

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Thermodynamic and Transport Property Correlation Formulas for Equlibrium Air from 1,000° K to 15,000° K

Thermodynamic and Transport Property Correlation Formulas for Equlibrium Air from 1,000° K to 15,000° K
Title Thermodynamic and Transport Property Correlation Formulas for Equlibrium Air from 1,000° K to 15,000° K PDF eBook
Author John R. Viegas
Publisher
Pages 34
Release 1962
Genre Air
ISBN

Download Thermodynamic and Transport Property Correlation Formulas for Equlibrium Air from 1,000° K to 15,000° K Book in PDF, Epub and Kindle

Tables of Thermodynamic Properties of Air in Chemical Equilibrium Including Second Virial Corrections from 1500−p0−s K to 15,000−p0−s K

Tables of Thermodynamic Properties of Air in Chemical Equilibrium Including Second Virial Corrections from 1500−p0−s K to 15,000−p0−s K
Title Tables of Thermodynamic Properties of Air in Chemical Equilibrium Including Second Virial Corrections from 1500−p0−s K to 15,000−p0−s K PDF eBook
Author United States. National Bureau of Standards
Publisher
Pages 364
Release 1965
Genre Air
ISBN

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Approximations for the Thermodynamic and Transport Properties of High-temperature Air

Approximations for the Thermodynamic and Transport Properties of High-temperature Air
Title Approximations for the Thermodynamic and Transport Properties of High-temperature Air PDF eBook
Author C. Frederick Hansen
Publisher
Pages 724
Release 1958
Genre Air
ISBN

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The thermodynamic and transport prorerties of high-temperature air are found in closed form starting from approximate partition functions for the major components in air and neglecting all minor components. The compressibility, energy, entropy, the specific heats, the speed of sound, the coefficients of viscosity and of thermal conductivity, and the Prandtl numbers for air are tabulated from 500 degrees to 15,000 degrees K over a range of pressure from 0.0001 to 100 atmospheres. The enthalpy of air and the mol fractions of the major components of air can easily be found from the tabulated values for compressibility and energy. It is predicted that the Prandtl number for fully ionized air will become small compared to unity, the order of 0.01, and this implies that boundary layers in such flow will be very transparent to heat flux.