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- W2300565462 abstract "Viscosity andd thermal conductivity data for liquid and vapor biphenyl and ortho-, meta-, and para-terphenyl (all 99.5+ per cent pure) were determined for use in heat transfer correlations. The liquid properties were measured over a temperature range at atmospheric pressure andd equations were fitted to the data. Liquid viscosities were measured using capillary viscometers, and thermal conductivities were determined with a hot wire apparatus. Viscosities and thermal conductivities for vapor states were calculated at low pressure and at saturation. Equations for low-pressure vapor viscosity were developed by the Bromley-Wilke method, and for low-pressure vapor thermal conductivity by the method of Bromley. For the saturated vapors, viscosity equations were established using the method of Grunberg and Nissan, and thermal conductivity equations were established based on corresponding pressure states relationship. Using these equations, liquid and vapor viscosity and thermal conductivity values were calculated up to at least 850 deg F in 10 deg F increments via IBM-704 computer. The thermal conductivities of unsaturated polyphenyl vapors were calculated by the method of Lenoir, Junk and Comings at reduced temperatures above one and at reduced pressures of 0.2 to 2. Heat transfer capabilities of liquid and vapor biphenyl and the terphenyls were evaluated bymore » use of their determined physical properties and the Dittus-Boelter equation. For heat transfer, liquid biphenyl is superior to the terphenyls below 700 deg F whereas ortho-terphenyl excels above 700 deg F. Liquid mixtures of biphenyl with ortho- or meta-terphenyl are better for heat transfer than any of the pure materials above 550 deg F. (auth)« less" @default.
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- W2300565462 date "1963-07-31" @default.
- W2300565462 modified "2023-09-27" @default.
- W2300565462 title "VISCOSITY AND THERMAL CONDUCTIVITY OF POLYPHENYLS IN THE LIQUID AND VAPOR STATES. Final Report" @default.
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