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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 Cryogenic Engineering Advances in the Space Age
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    Chapter 2 Air Core Cryogenic Magnet Coils for Fusion Research and High-Energy Nuclear Physics Applications
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    Chapter 3 Design of Large Cryogenic Magnet Coils
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    Chapter 4 Cryogenic Experience with the 72-Inch Bubble Chamber
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    Chapter 5 Large-scale Production, Handling, and Storage of Liquid Hydrogen
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    Chapter 6 A Study of the Hazards in the Storage and Handling of Liquid Hydrogen
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    Chapter 7 Test Equipment and Procedures Used in the Development of Liquid Oxygen-Hydrogen Rocket Engines
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    Chapter 8 Practical Storage and Distribution of Liquid Hydrogen and Helium
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    Chapter 9 Handling Liquid Fluorine in Rocket Applications
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    Chapter 10 Handling Liquid Hydrogen on a Pilot-Plant Scale
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    Chapter 11 Cryogenic Tankage for Space Flight Applications
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    Chapter 12 Transfer of Liquid Hydrogen through Uninsulated Lines
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    Chapter 13 Flexibility Considerations for the Design of Cryogenic Transfer Lines
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    Chapter 14 Facilities for Testing Rocket Engine Components Using Cryogenic Fluids as Propellants
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    Chapter 15 Externally Bonded and Sealed Insulation for Liquid-Hydrogen-Fueled Rocket Tanks
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    Chapter 16 Flat Panel Vacuum Thermal Insulation and the Super-Dewar Flask
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    Chapter 17 Metal Powder Additives in Evacuated-Powder Insulation
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    Chapter 18 Effect of Condensation on Conventionally Insulated Cryogenic Tanks
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    Chapter 19 A Study of Condensing-Vacuum Insulation
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    Chapter 20 Low-Temperature Insulating Systems
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    Chapter 21 Development of High-Efficiency Insulation
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    Chapter 22 Multiple-Layer Insulation
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    Chapter 23 Engineering Aspects of Heat Transfer in Multilayer Reflective Insulation and Performance of NRC Insulation
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    Chapter 24 Characteristics and Applications of Some Superinsulations
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    Chapter 25 Cryogenic Insulation Development
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    Chapter 26 Heat Transfer to Helium II for Big Differences of Temperature between Heated Wall and Superfluid Helium Bath
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    Chapter 27 Transient Phenomena Associated with the Pressurization of Liquid Nitrogen Boiling at Constant Heat Flux
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    Chapter 28 Recent Developments of the Reversing Exchanger
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    Chapter 29 Design, Construction, and Testing of a Helium-to-Hydrogen Heat Exchanger
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    Chapter 30 Boiling Heat Transfer to Liquid Hydrogen from Flat Surfaces
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    Chapter 31 Nucleate- and Film-Boiling Studies with Liquid Hydrogen
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    Chapter 32 On the Evacuation of Plastic Foams to Reduce Their Thermal Conductivity
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    Chapter 33 The Venturi Tube as a Liquefied-Gas Flow Measuring Device
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    Chapter 34 High-Pressure Liquid-Hydrogen and -Helium Pumps
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    Chapter 35 A Volumetric Flowmeter for Liquid Oxygen
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    Chapter 36 Results of Flowmeter Calibration in Liquid Hydrogen
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    Chapter 37 Crew Compartment Environmental Control Utilizing Cryogenic Fluids
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    Chapter 38 A Closed Infrared Detector Cooling System
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    Chapter 39 Miniature Joule-Thomson Refrigeration Systems
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    Chapter 40 Continuous Refrigeration between 4.2 and 1°K
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    Chapter 41 The Liquefaction of Natural Gas
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    Chapter 42 Design, Construction, and Performance of a Laboratory-Size Helium Liquefier
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    Chapter 43 A New Low-Temperature Gas Expansion Cycle
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    Chapter 44 A New Low-Temperature Gas Expansion Cycle
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    Chapter 45 The Strength of Ten Structural Adhesives at Temperatures Down to -424°F
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    Chapter 46 The Behavior of High-Magnesium-Content Aluminum Alloys at Room and Liquid-Nitrogen Temperatures
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    Chapter 47 Some Mechanical Properties of Magnesium Alloys at Low Temperatures
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    Chapter 48 Mechanical Properties of High-Strength 301 Stainless Steel Sheet at 70, -320, and -423°F in the Base Metal and Welded Joint Configurations
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    Chapter 49 The Low-Temperature Mechanical Properties of Some Selected Austenitic Manganese Steels
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    Chapter 50 The Tensile and Impact Properties of Plate and Welds of Aluminum Alloy 5083-H113 between 75 and -320°F
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    Chapter 51 Single-Phase Flow Tests with Liquid Hydrogen
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    Chapter 52 Gas-Pressurized Transfer of Liquid Hydrogen
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    Chapter 53 A Survey of Stratification in a Cryogenic Liquid
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    Chapter 54 Transient Phenomena Associated with the Pressurized Discharge of a Cryogenic Liquid from a Closed Vessel
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    Chapter 55 Pressure-Temperature Histories of Liquid Hydrogen under Pressurization and Venting Conditions
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    Chapter 56 An Experimental Study Concerning the Pressurization and Stratification of Liquid Hydrogen
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    Chapter 57 Temperature Distribution in Liquid and Vapor Phases of Helium in Cylindrical Dewars
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    Chapter 58 Measuring Vapor-Liquid Ratios during Flow by a Capacitance Method
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    Chapter 59 A Kinetics Study of Ortho-Para Hydrogen Conversion
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    Chapter 60 Refrigeration Below -100°C
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    Chapter 61 Effective Density of Boiling Liquid Oxygen
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    Chapter 62 Maximum-Rate Theory of Impact Sensitivity
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    Chapter 63 Composition and Analysis of Commercial Liquid Oxygen
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    Chapter 64 Experimental Large-Scale Equipment for Low-Temperature Distillation Tray Studies
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    Chapter 65 A Compilation and Correlation of the P-V-T Data of Normal Hydrogen from Saturated Liquid to 80°K
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    Chapter 66 The Cryogenic Data Center
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    Chapter 67 An Improved dc Power Regulator
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    Chapter 68 Vacuum Gaskets for Use at 20°K
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Title
Advances in Cryogenic Engineering
Published by
Springer US, November 2013
DOI 10.1007/978-1-4757-0537-9
ISBNs
978-1-4757-0539-3, 978-1-4757-0537-9
Editors

Timmerhaus, K. D.

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 6 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 6 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 2 33%
Researcher 1 17%
Unknown 3 50%
Readers by discipline Count As %
Engineering 3 50%
Unknown 3 50%