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Advances in Cryogenic Engineering

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Cover of 'Advances in Cryogenic Engineering'

Table of Contents

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    Book Overview
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    Chapter 1 Liquid Hydrogen as a Supersonic Transport Fuel
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    Chapter 2 The Application of Cryogenic Fluids to the Freezing of Foods
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    Chapter 3 The Transportation of LNG by Ship
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    Chapter 4 Hydrogen Reliquefaction in Earth Orbit
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    Chapter 5 Experiments on the Saturn S-Ib Stage to Determine the Lox Density
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    Chapter 6 A Fixed Percentage Binary Gas for Life Support Derived from Two Steady-State Cryogenic Liquids
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    Chapter 7 A System for Venting a Propellant Tank in the Absence of Gravity
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    Chapter 8 Zero- g Hydrogen Tank Venting Systems
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    Chapter 9 Nonequilibrium Storage and Expulsion of Single-Phase Cryogens
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    Chapter 10 Dynamics of a Cryogenic Liquid in an Electric Field
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    Chapter 11 Study of Stratification Similitude Laws in Liquid Hydrogen
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    Chapter 12 Free Convection in a Container of Cryogenic Fluid
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    Chapter 13 Systems for Environments in Space at Cryogenic Temperatures
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    Chapter 14 An Experimental and Analytical Evaluation of the Thermal Behavior of Liquid Hydrogen in a Tank Designed and Insulated for Use in a Hypersonic Vehicle
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    Chapter 15 A Carbon Dioxide Purge and Thermal Protection System for Liquid Hydrogen Tanks of Hypersonic Airplanes
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    Chapter 16 Sorption Pumping of Residual Gases at Cryogenic Temperatures
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    Chapter 17 Experiments and Target-Gas Storage at the Cea at the Time of the July 5, 1965 Accident and Fire
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    Chapter 18 A Review of Liquid-Hydrogen Safety for Research Equipment
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    Chapter 19 Project Rover Liquid Hydrogen Safety—A Five Year Look
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    Chapter 20 A Practical Safety Standard for Commercial Handling of Liquefied Hydrogen
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    Chapter 21 Hydrogen Vent Flare Stack Performance
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    Chapter 22 Design and Development of a Test Facility for the Disposal of Hydrogen at High Flow Rates
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    Chapter 23 Thermal Performance of Tank Applied Multilayer Insulations
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    Chapter 24 The Effects of Propellant Leakage on the Heat Transfer to a Cryogenic Propellant Tank Utilizing High-Performance Multilayer Insulations
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    Chapter 25 A Comparison of Shroud-Mounted with Tank-Mounted High-Performance Insulation
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    Chapter 26 Effective Thermal Conductivity and Multilayered Insulation
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    Chapter 27 Hydrogen Liquid Level Influence on Aircraft Tank Insulation
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    Chapter 28 Analysis, Design, and Testing of Heat-Short-Isolation Components for High-Performance Insulation Systems
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    Chapter 29 Thermal Insulation for Liquid Hydrogen Space Tankage
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    Chapter 30 Ultra-Efficient Insulation System for Solid Cryogen Coolers
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    Chapter 31 The Surface Emittance of Vacuum-Metallized Polyester Film
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    Chapter 32 An Absolute Emissivity Calorimeter for Temperatures To 60°K
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    Chapter 33 Measuring the Thermal Conductivity of Irradiated Foam-Type Insulation Materials
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    Chapter 34 Evaluation of Optimum Current-Carrying Leads for Cryogenic Apparatus
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    Chapter 35 A Comparison of Cooldown Time between Internally Coated and Uncoated Propellant Lines
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    Chapter 36 Plated-Tube Heat Exchanger: Analytical Investigation of a New Surface Concept
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    Chapter 37 The Effect of Flow Distribution in Parallel Channels of Counterflow Heat Exchangers
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    Chapter 38 Performance Deterioration in High Effectiveness Heat Exchangers Due to Axial Heat Conduction Effects
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    Chapter 39 Cooldown of Shrouded Spherical Vessels in Liquid Nitrogen
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    Chapter 40 Correlation of the Maximum Heat Flux and Temperature Difference in the Nucleate Boiling of Corresponding States Liquids
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    Chapter 41 Pool Boiling Heat Transfer in Liquid Neon
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    Chapter 42 Pool Boiling of Methane between Atmospheric Pressure and the Critical Pressure
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    Chapter 43 Pressure Drop of Two-Phase Single Component Isothermal Upward Flow of Nitrogen and Methane at High Pressures
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    Chapter 44 A Pressure-Drop Study of Freon-11, Near Saturation
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    Chapter 45 Critical Two-Phase Flow of Nitrogen and Oxygen Through Orifices
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    Chapter 46 Pressure Oscillations Induced by Forced Convection Heating of Dense Hydrogen
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    Chapter 47 The Transport of LNG by Pipe Lines: Technical and Economic Aspects
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    Chapter 48 A Review of Cryogenic Fracture Toughness Behavior
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    Chapter 49 Notch Toughness of Some Aluminum Alloy Castings at Cryogenic Temperatures
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    Chapter 50 A Versatile Aluminum Alloy for Cryogenic Applications
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    Chapter 51 A Statistical Analysis of Aluminum Welds Tested at Cryogenic Temperatures
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    Chapter 52 Effect of Aging on the Tensile Properties of Alloy 7039 GTA Welds at Low Temperatures
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    Chapter 53 An Age-Hardenable, Low-Expansion Alloy for Cryogenic Service
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    Chapter 54 Mechanical Properties of Several Nickel-Base Alloys at Room and Cryogenic Temperatures
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    Chapter 55 Cryogenic Properties of 18Ni-9Co-5Mo and 18Ni-7Co-5Mo Maraging Steel Sheet
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    Chapter 56 Radiation Effects on Shear Strength of Several Alloys at Liquid Hydrogen Environment
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    Chapter 57 A 4°K Joule-Thomson Laboratory Refrigerator
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    Chapter 58 Performance of a 4°K Refrigerator
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    Chapter 59 Size and Power Requirements of 4.2°K Refrigerators
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    Chapter 60 Design of a Cryogenic Expansion Engine for Tonnage Hydrogen Liquefaction
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    Chapter 61 A Metal Bellows Expansion Engine
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    Chapter 62 An Electrical Indicator for Expansion Engines at Low Temperature
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    Chapter 63 An Experimental Investigation of Pulse Tube Refrigeration Heat Pumping Rates
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    Chapter 64 Reversible Pulse Tube Refrigeration
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    Chapter 65 Multistage, Gas-Bearing, Helium Compressor Development
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    Chapter 66 Light-Weight Liquid Helium Dewar
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    Chapter 67 Commercial Handling of Liquid Helium Dewars
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    Chapter 68 A Superconducting Gyroscope for Gimballed Platform Application
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    Chapter 69 Disturbance of Capacitive Liquid Level Gauges by Nuclear Radiation
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    Chapter 70 20°K In-Pile Irradiation Facility
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    Chapter 71 Design and Testing of Dissimilar Metal Transition Joints Employing Roll-Bonded and Friction-Welded Components
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    Chapter 72 Effects of Low Temperatures on Detonation Velocity and Other Explosive Parameters for Linear Shaped Charge Systems
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    Chapter 73 Low Temperature Determination of P-V-T Properties of Gases and Liquids
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    Chapter 74 P-V-T Behavior of Neon at Temperatures from 70° to 120°K and Pressures to 300 Atmospheres
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    Chapter 75 Liquid-Vapor Equilibria of the Neon-Helium System
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    Chapter 76 Р-ρ-Т Relationships of Low Pressure Helium—Hydrogen Mixtures at Cryogenic Temperatures
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    Chapter 77 High Pressure Adsorption Isotherms of Neon, Hydrogen, and Helium at 76°K
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    Chapter 78 Thermodynamic Analysis of Vapor-Liquid and Vapor-Solid Equilibria Data to Obtain Interaction Second Virial Coefficients
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    Chapter 79 Measurements of the Sound Velocity in the Critical Region of Argon
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    Chapter 80 Compatibility of Atlas Materials with Fluorine Propellants
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    Chapter 81 Corrosion of Metals by Flowing Liquid Fluorine Compounds
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    Chapter 82 Potential Hazards of Teflon Gaskets in Liquid Fluorine Systems
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Title
Advances in Cryogenic Engineering
Published by
Springer US, November 2013
DOI 10.1007/978-1-4757-0489-1
ISBNs
978-1-4757-0491-4, 978-1-4757-0489-1
Editors

Timmerhaus, K. D.

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Geographical breakdown

Country Count As %
Unknown 1 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 1 100%
Readers by discipline Count As %
Engineering 1 100%