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Steam tables, thermodynamic properties

Keenan, J. H., F. G. Keyes, P. G. Hill and J. G. Moore, 1969, Steam Tables, Thermodynamic Properties of Water Including Vapor, Liquid, and Solid Phases. Wiley, New York. [Pg.520]

Haar L., Gallager J. G, and Kell G. S. (1984). NBSINRC Steam Tables Thermodynamic and transport properties and computer programs for vapor and liquid states of water in SI units. New York Hemisphere Pub. Co., McGraw-Hill. [Pg.833]

Lester Haar, John S. Gallagher, and George S. Kell, NBS/NRC Steam Tables Thermodynamic and Transport Properties and Computer Programs for Vapor and Liquid States of Water in SI Units, Hemisphere Publishing, Washington, DC, 1984. [Pg.291]

C. A. Meyer, R. B. McClintock, G. J. SiLVESTRi, R. C. Spencer Jr., Steam Tables - Thermodynamic and Transport Properties of Steam, 6tli edn, ASME, New York, 1992. [Pg.442]

ASME Steam Tables, Thermodynamic and Transport Properties of Steam, 6 Edition, ASME, NY, 1993. [Pg.176]

TABLE 2-354 Thermodynamic Properties of Compressed Steam Concluded)... [Pg.354]

Extensive tables of the viscosity and thermal conductivity of air and of water or steam for various pressures and temperatures are given with the thermodynamic-property tables. The thermal conductivity and the viscosity for the saturated-liquid state are also tabulated for many fluids along with the thermodynamic-property tables earlier in this section. [Pg.362]

This equation is seldom used, because the tables of the thermodynamic properties of fluids (steam tables) allow the values of the fluid/gas vapor to be accurately obtained. [Pg.46]

Water properties can be found from tables, such as the VDl-Wasser-dampftafeln The NBS/NRC Steam Tables the ASHRAE and CIBSE Guides or Thermodynamic and Transport Properties of Fluids by Mayhew and Rodgers. First we dimension d, and now Eq. (4.65) is... [Pg.61]

All thermodynamic data for air, the reaction gas mixture, and feed ammonia are taken from Ref.TDI (Section 3). Heat capacities for the various gas mixtures are calculated from the correlations in Ref.TD2. (Table E.1, p.538). Steam tables in Ref.TD3 are also used. Nitric acid properties are taken from Ref.TD4 (p.D-126 and D-77). Reaction equilibrium data are obtained from Refs. PT1 and PT2. [Pg.258]

We gratefully acknowledge the contributions of Professor Charles Mucken-fuss, of Debra L. Saucke, and of Eugene N. Dorsi, whose efforts produced computer programs for calculation of the thermodynamic properties of steam and ultimately the Steam Tables of App. C. We would also like to thank the reviewers of this edition Stanley M. Walas, University of Kansas Robert G. Squires, Purdue University Professor Donald Sundstrom, University of Connecticut and Professor Michael Mohr, Massachusetts Institute of Technology. Most especially, we acknowledge the contributions of Professor M. M. Abbott, whose creative ideas are reflected in the structure and character of this fourth edition, and who reviewed the entire manuscript. [Pg.7]

These results may be tabulated along with the corresponding conditions of T and P existing at section 2 for a large number of runs. In addition, specific-volume measurements may be made for these same conditions, and these may be tabulated. Corresponding values of the internal energy of water may be calculated by Eq. (2.6), U = H - PV, and these numbers too may be tabulated. In this way tables of thermodynamic properties may be compiled over the entire useful range of conditions. The most widely used such tabulation is for H20 and is known as the steam tables, t... [Pg.388]

All tables are generated by computer from programs based on The 1976 IFCt Formulation for Industrial Use A Formulation of the Thermodynamic Properties of Ordinary Water Substance, as published in the ASME Steam Tables, 4th ed., App. I, pp. 11-29, The Am. Soc. Mech. Engrs., New York, 1979. [Pg.531]


See other pages where Steam tables, thermodynamic properties is mentioned: [Pg.350]    [Pg.351]    [Pg.353]    [Pg.46]    [Pg.57]    [Pg.46]    [Pg.388]    [Pg.421]    [Pg.885]   
See also in sourсe #XX -- [ Pg.118 ]




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