By T. M. Flynn, B. W. Birmingham (auth.), K. D. Timmerhaus (eds.)
Invited Papers.- Cryogenics and nationwide Goals.- A evaluation of the opportunity of Liquid-Methane gasoline for Supersonic Transports.- Slush and Subcooled Propellants for Lunar and Interplanetary Missions.- Thermodynamic Properties.- Equilibrium Gas-Phase Compositions of Ethane and Ethylene in Binary combos with Helium and Neon less than 150°K and a Correlation for Deviations from the Geometric suggest Combining Rule.- The Kinetics of Adsorption of Methane and Nitrogen from Hydrogen Gas.- Benedict-Webb-Rubin Equation of nation for Methane at Cryogenic Conditions.- a brand new Calorimeter for the actual decision of the Enthalpy of Pressurized Fluids right down to 160°R.- homes of Materials.- Simultaneous size of Young’s Modulus and Shear Modulus at Low Temperatures.- Tensile houses and Notch durability of Groove Welds in Wrought and forged Aluminum Alloys at Cryogenic Temperatures.- Low-Temperature Mechanical homes of Welded and Brazed Copper.- Superconductivity.- A excessive box Magnet Combining Superconductors with Water-Cooled Conductors.- huge Superconducting Baseball Magnet.- trying out Composite Superconductor for the LRL Baseball Magnet.- brief reaction and balance Limits of Superconducting Composite cord Following a Flux Jump.- Flux-Flow reviews and balance standards of Nb-Ti Strips.- The Transition to Current-Sharing in Composite Conductors.- balance of Internally Cooled Superconductors.- results of Nucleate Cooling Limits at the functionality of Small Ti-Nb Solenoids.- warmth Transfer.- Non-Boiling and picture Boiling warmth move to a Saturated bathtub of Liquid Helium.- Boiling warmth move and strain Drop of Liquid Helium-I lower than pressured movement in a Helically Coiled Tube.- Nucleate Boiling warmth move from an Oscillating Sphere in Liquid Nitrogen.- A Miniature warmth Exchanger for Simultaneous Para-Orthohydrogen Conversion and warmth Transfer.- be aware on warmth Exchanger layout for Cryogenic Propellant Tanks.- A Compact Perforated-Plate warmth Exchanger.- Insulation.- Analytical versions for Airborne-Cryogenic-Insulation Thermal Performance.- review of an Externally Insulated Spacecraft Dewar.- Experimental selection of Thermal lodging Coefficients.- Thermal Diffusivity of Powder Insulation.- Predictions of the complete Emissivity of Metals at Cryogenic Temperatures.- Radiative features of Cryodeposits for Room Temperature Black physique Radiation.- Fluid Dynamics.- Thermal Stratification in Closed Cryogenic Containers.- Approximate Criterion for Prediction of move Oscillations in Supercritical Fluid warmth Exchangers.- The interplay of keep an eye on Valves with Oscillations Generated in a wide Water to Hydrogen warmth Exchanger.- Cavitation in Liquid Cryogens.- An research of the results of Spatial, Thermal, and speed Inhomogeneities on Two-Phase, unmarried part Cryogenic Choked Flow.- Two-Phase (Liquid-Vapor), Mass-Limiting stream with Hydrogen and Nitrogen.- Instrumentation.- Cryogenic move examine Facility of the nationwide Bureau of Standards.- Prelaunch Slush Hydrogen Loading components Affecting Instrumentation and Control.- Use of Capacitance point Gauging for Prelaunch Loading of Slush Hydrogen.- development on Cryogenic Thermocouples.- Fluid part and Temperature size with a unmarried Sensor.- lighting fixtures in Cryogenic and Noncryogenic Fluids.- Refrigeration Systems.- An research of the Stirling-Cycle Refrigerator.- Steady-State Operation of the Idealized Vuilleumier Refrigerator.- Compact Cryogenic Thermal Regenerator Performance.- loose Displacer Refrigeration.- Dynamical results of the Rhombic force for Miniature Cooling Engines.- improvement of a pragmatic Thermodynamic Cycle for a Space-Borne Hydrogen Reliquefier.- A 3.6°K Reciprocating Refrigerator.- improvement of Novel gasoline Bearing Supported Cryogenic enlargement Turbines.- Miniature Cryogenic fridge Turboalternators.- regulate process for Temperatures and Liquid point among 4.2° and 1°K.- Closed-Cycle fridges for Hydrogen Targets.- Cryogenic Systems.- Solidified Oxygen for inhaling Space.- Slush Hydrogen Pumping features utilizing a Centrifugal-Type Pump.- attempt result of a Zero-Gravity Cryogenic section Separator.- Hydrogen Peroxide Motor Exhaust Heating to elements at Cryogenic Temperatures within the Vacuum of Space.- research of Propagation disasters of versatile Linear formed fees at Cryogenic Temperatures.- The habit of ordinary Liquid Hydrogen objective platforms below Simulated Failure Modes.
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Additional resources for Advances in Cryogenic Engineering: Proceedings of the 1968 Cryogenic Engineering Conference Case Western Reserve University Cleveland, Ohio August 19–21, 1968
However, ineluding an appropriate correction for the geometric mean combining rule with the virial equation provides an excellent fit of the data. The fact that the helium-ethane data are represented bett er at the higher pressures than are the helium-ethylene data is a result of the estimated value of the interaction third virial coefficient of the helium-ethane system being eloser to the experimental value than that of the helium-ethylene system. The value of k 12 used in each case was determined by a comparison of values of B 12 calculated from the Kihara potential model with those obtained by a least squares fit of the data to equation (I).
23. J. M. Prausnitz, private communication, (September, 1967). 24. J. M. Prausnitz, private communication, (lanuary, 1968). 25. M. Benedict, G. B. Webb, and L. C. Rubin, Chem. Eng. , 47(8):419 (1951). 26. L. S. D. Dissertation, Rice Institute, Houston, Tex. (1957). 27. International Critical Tables, Vol. , New York (1929), p. 69. 28. K. S. Pitzer in: Advances in Chemical Physics, Vol. 11, Interscience Publishers, New York (1959), p. 71. B-2 THE KINETICS OF ADSORPTION OF METHANE AND NITROGEN FROM HYDROGEN GAS A.
0, but for practical calculations this has no significance. The procedure for obtaining the mass transfer coefficients from the experimental data is outlined by Eagleton and Bliss [7). The values for k g and ks are given in Table I. In order to compare the k g values of this research with those of other investigators, it is necessary to convert the data to ja values where jd = k (_11-_)2/ 3 g G pD AB (5) A comparison of ja values from various sources with those of this investigation is presented in Fig.
Advances in Cryogenic Engineering: Proceedings of the 1968 Cryogenic Engineering Conference Case Western Reserve University Cleveland, Ohio August 19–21, 1968 by T. M. Flynn, B. W. Birmingham (auth.), K. D. Timmerhaus (eds.)