Download e-book for iPad: Advances in Cryogenic Engineering: Proceedings of the 1968 by T. M. Flynn, B. W. Birmingham (auth.), K. D. Timmerhaus

By T. M. Flynn, B. W. Birmingham (auth.), K. D. Timmerhaus (eds.)

ISBN-10: 1475705492

ISBN-13: 9781475705492

ISBN-10: 1475705514

ISBN-13: 9781475705515

Invited Papers.- Cryogenics and nationwide Goals.- A evaluation of the possibility of Liquid-Methane gas for Supersonic Transports.- Slush and Subcooled Propellants for Lunar and Interplanetary Missions.- Thermodynamic Properties.- Equilibrium Gas-Phase Compositions of Ethane and Ethylene in Binary combinations with Helium and Neon under 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 country for Methane at Cryogenic Conditions.- a brand new Calorimeter for the actual choice 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 homes and Notch durability of Groove Welds in Wrought and solid Aluminum Alloys at Cryogenic Temperatures.- Low-Temperature Mechanical houses 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.- temporary reaction and balance Limits of Superconducting Composite twine 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 movie Boiling warmth move to a Saturated tub of Liquid Helium.- Boiling warmth move and strain Drop of Liquid Helium-I below compelled circulate 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.- notice on warmth Exchanger layout for Cryogenic Propellant Tanks.- A Compact Perforated-Plate warmth Exchanger.- Insulation.- Analytical types for Airborne-Cryogenic-Insulation Thermal Performance.- review of an Externally Insulated Spacecraft Dewar.- Experimental decision of Thermal lodging Coefficients.- Thermal Diffusivity of Powder Insulation.- Predictions of the entire 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 circulation 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 consequences of Spatial, Thermal, and speed Inhomogeneities on Two-Phase, unmarried part Cryogenic Choked Flow.- Two-Phase (Liquid-Vapor), Mass-Limiting circulation with Hydrogen and Nitrogen.- Instrumentation.- Cryogenic movement study Facility of the nationwide Bureau of Standards.- Prelaunch Slush Hydrogen Loading elements Affecting Instrumentation and Control.- Use of Capacitance point Gauging for Prelaunch Loading of Slush Hydrogen.- development on Cryogenic Thermocouples.- Fluid section and Temperature size with a unmarried Sensor.- lights 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.- unfastened 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.- keep an eye on approach 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.- try result of a Zero-Gravity Cryogenic section Separator.- Hydrogen Peroxide Motor Exhaust Heating to parts at Cryogenic Temperatures within the Vacuum of Space.- research of Propagation disasters of versatile Linear formed fees at Cryogenic Temperatures.- The habit of commonplace Liquid Hydrogen goal platforms less than 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

Sample text

C. (July, 1967). 30. C. Woodand H. G. Paul, in: First Intern. CryogenicEngineering Conference, Heywood Temple, London (April, 1967), p. 13. 31. L. J. Poth, "Study of Cryogenic Propellant Stratification Reduction Techniques," General Dynamics/Fort Worth, FZA-419-1 (September, 1967). 32. J. A. Stark and M. H. Blatt, "Cryogenic Zero-Gravity Prototype Vent System," General Dynamics/Convair, GDC-DDB67-006 (October, 1967). B-l EQUlLmRIUM GAS-PHASE eOMPOSITIONS OF ETHANE AND ETHYLENE IN BINARY MIXTURES WITH HELIUM AND NEON BELOW 1500 K AND A eORRELATION FOR DEVIATIONS FROM THE GEOMETRIe MEAN eOMBlNlNG RULE M.

The infrequent, one-time emergency deseent will probably be easier to aeeommodate than providing for the possibility of planned intermediate stops, which must permit economical un-refueled landing and subsequent takeoff and climb. Some concepts like high-pressure tanks (with saturated fuel) or zero-ullage tanks (with sub-cooled fuel) will be insensitive to this problem; however, some of the other eoncepts may ineur significant economic or safety penalties as a result. Brief mention of this diffieulty is made in arecent NASA publication [9].

A. Eckert, Henri Renon, and J. M. Prausnitz, Ind. Eng. Chem. , 6(1):58 (1967). 10. P. L. Chueh and]. M. , 13(5):896 (1967). 11. P. L. Chueh and]. M. Prausnitz, Ind. Eng. Chem. , 6(4):492 (1967). 12. M. J. Hiza, C. K. Heck, and A. J. Kidnay, in: Advances in Cryogenic Engineering, Vol. 13, Plenum Press, New York (1968), p. 343. 13. M. J. Hiza, C. K. Heck, and A. J. Kidnay, Chem. Eng. Progr. Symp. , in press. 14. R. B. Williams and D. L. Katz, Ind. Eng. , 46(12):2512 (1954). 15. C. K. D. Dissertation, University of Colorado, Boulder (1968).

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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.)

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