A Review of the Status of the Thermophysical Properties of Hydrogen Including Thermodynamic Properties and Transport Properties

A Review of the Status of the Thermophysical Properties of Hydrogen Including Thermodynamic Properties and Transport Properties
Author: Richard T. Jacobsen
Publisher:
Total Pages: 112
Release: 2006
Genre: Hydrogen
ISBN:

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"Accurate thermophysical properties of hydrogen are needed for engineering system design and analysis to support the proposed hydrogen economy. The future use of hydrogen for transportation systems provides some technology challenges. The temperatures and pressures of the systems used to generate and store hydrogen may be beyond the ranges of the currently accepted thermodynamic and transport property formulations developed in the 1980s. We have included a brief discussion of the practical aspects of hydrogen chemistry associated with the storage of hydrogen under various conditions. The nature of normal hydrogen as a mixture of orthohydrogen and parahydrogen is discussed in relation to its behavior. We have surveyed the literature for papers containing experimental data on hydrogen properties and have compiled listings of the available data with ranges of temperature and pressure. In addition, we have presented graphs of the pressure-density-temperature (P-[rho]-T) surface illustrating the available data on both P-[rho] and P-T coordinates. This report includes graphical comparisons of calculated thermodynamic and transport properties of normal hydrogen and parahydrogen with the available experimental data to illustrate the accuracy of the current standard formulations. It also presents graphical illustrations of selected calculated properties using the current standard modes."--Page iii.

Energy Research Abstracts

Energy Research Abstracts
Author:
Publisher:
Total Pages: 1744
Release: 1982
Genre: Power resources
ISBN:

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NBS Monograph

NBS Monograph
Author: United States. National Bureau of Standards
Publisher:
Total Pages: 532
Release: 1981
Genre: Physics
ISBN:

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Energy

Energy
Author:
Publisher:
Total Pages: 418
Release: 1982
Genre: Fuel
ISBN:

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Process Design for Cryogenics

Process Design for Cryogenics
Author: Alexander Alekseev
Publisher: John Wiley & Sons
Total Pages: 530
Release: 2024-08-28
Genre: Technology & Engineering
ISBN: 3527815627

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Up-to-date overview of the method for producing the main industrial gases This book covers process design for cryogenic processes like air separation, natural gas liquefaction, and hydrogen and helium liquefaction. It offers an overview of the basics of cryogenics and information on process design for modern industrial plants. Throughout, the book helps readers visualize the theories of thermodynamics related to cryogenics in practice. A central concept in the book is the connection between the theoretical world of process design and the real limitations given by available hardware components and systems. Sample topics covered in Process Design for Cryogenics include: Cryogenic gases like nitrogen, oxygen, argon, neon, hydrogen, helium, and methane Thermodynamics Typical cryogenic refrigeration processes, including the classic Joule Thomson process, the contemporary mixed-gas Joule Thomson process, and expander-based processes like Brayton and Claude cycles Helium and hydrogen liquefaction and air separation Process Design for Cryogenics is a comprehensive must-have resource for engineers and scientists working in academia and industry on cryogenic processes.

Liquid Hydrogen

Liquid Hydrogen
Author: Walter Peschka
Publisher: Springer Science & Business Media
Total Pages: 308
Release: 2012-12-06
Genre: Science
ISBN: 3709191262

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to the German Edition This book is based on published material, oral presentations and lecture courses, as well as the author's personal research in the specific field of space technology and in the general areas of energy storage and transfer, and cryogenics. The science and technology of liquid hydrogen-once essential prere quisites for the rapid development of space technology-are now also proving to be more and more important for the energy production of the future. Hydrogen as an energy carrier can generally mediate the existing disparity between nuclear energy and regenerative energy, both of which are indispensable for the future. Hydrogen, as a secondary energy carrier, can be produced from these primary energy sources with minimal environmental impact and without the detrimental, long-term pollution effects of current fossil fuel technology. Hydrogen, therefore, represents the ultimate in energy technology. The initial, large-scale application of hydrogen as a secondary energy was as a high-energy rocket propellant. The procedures for its large scale liquefaction, storage and employment were generally developed in the U.S. Currently in Europe similar activities are being conducted only in France. The effort in West Germany involves testing hydrogen-oxygen and hydrogen-fluorine rocket engines, studying also the physical and technical characteristics of slush hydrogen-mixture of the solid and liquid phase-and is concentrating currently on R&D applications of liquid hydrogen as an alternate fuel. Similar activities are also being conducted in Japan and Canada.