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Steam tables in SI-units : concise steam tables in SI-units (student's tables). Properties of ordinary water substance up to 1000 ̊C and 100 megapascal = Wasserdampftafeln : Kurzgefasste Dampftafeln in SI-Einheiten (Studententafeln) : Zustandsgrössen von gewöhnlichem Wasser und Dampf bis 1000C̊ und 1000 bar Preview this item
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Steam tables in SI-units : concise steam tables in SI-units (student's tables). Properties of ordinary water substance up to 1000 ̊C and 100 megapascal = Wasserdampftafeln : Kurzgefasste Dampftafeln in SI-Einheiten (Studententafeln) : Zustandsgrössen von gewöhnlichem Wasser und Dampf bis 1000C̊ und 1000 bar

Author: Ulrich Grigull; J Straub; Peter Schiebener
Publisher: Berlin ; New York : Springer-Verlag, 1990.
Edition/Format:   Book : English : 3rd, enl. edView all editions and formats
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Genre/Form: Tables
Additional Physical Format: Online version:
Steam tables in SI-units.
Berlin ; New York : Springer-Verlag, 1990
(OCoLC)629872763
Document Type: Book
All Authors / Contributors: Ulrich Grigull; J Straub; Peter Schiebener
ISBN: 3540518886 9783540518884 0387518886 9780387518886
OCLC Number: 21179657
Notes: Foreword in English and German.
Description: 133 pages, 4 folded leaves of diagrams : illustrations, chiefly tables ; 25 cm
Contents: I. Quantities, Constants, Units.- Table A. Quantities and Units Presented.- References for Table A.- Table B. Constant Quantities of Ordinary Water.- Table C. Conversion of Units.- C 1. Pressure.- C 2. Temperature.- C 3. Energy, Work, Quantity of Heat.- C 4. Specific Heat Capacity, Specific Entropy, Specific Gas Constant.- C 5. Thermal Conductivity.- C 6. Viscosity.- C 7. Thermal Diffusivity, Kinematic Viscosity, Diffusion Coefficient.- C 8. Surface Tension.- Table D. Thermodynamic Relationships between the Properties p, ?, T, s, u, h and their Derivatives.- II. Tables of the Properties of Ordinary Water Substance.- Table 1. Thermodynamic and Transport Properties of Liquid Water and Superheated Steam inclusive the Saturation Values from the Triple Point to 1000 C and 100 MPa: p, t, ?, h, u, s, cp, ?p, ?, ? (Pressure Table).- Table 2. Thermodynamic and Transport Properties of Saturated Water and Steam.- 1. ?, h, r, w, s, cp, cv (Temperature Table).- 2. ?, ?, v,r, ?, b, ?y, ?s (Temperature Table).- 3. $$ \alpha _p ,\:\delta _h ,\:\delta _T ,\:\frac{{dr}} {{dT}},\frac{{dp}} {{dT}}\left| {_{sat} ,\frac{{d^2 p}} {{dT^2 }}} \right|_{sat} ,c_{sat} ,c,\chi _T $$ (Temperature Table).- 4. ?, h, r, u, s, cp, cv (Pressure Table).- 5. ?, ?, v, a, Pr, ?, b, ?y, ?s (Pressure Table).- 6. $$ \alpha _p ,\:\delta _h ,\:\delta _T ,\:\frac{{dr}} {{dT}},\frac{{dp}} {{dT}}\left| {_{sat} ,\frac{{d^2 p}} {{dT^2 }}} \right|_{sat} ,c_{sat} ,c,\chi _T $$ (Pressure Table).- Table 3. Properties of Water at 0.1 MPa from -30 C to the Saturation Temperature.- III. Diagrams.- Fig. 1. Dynamic Viscosity ? in the p, T-Plane.- Fig.2. Thermal Conductivity ? in the p, T-Plane.- Fig.3. Prandtl-Number Pr = ?cp / ? in the p, T-Plane.- Fig.4. Pressure-Enthalpy (log10p, h)-Diagram.- Fig. 5. T, s, p-Surface of Water Substance.- Fig. 6. T, s-Diagram.- Fig. 7. p, ?, T-Surface of Water Substance.- Fig. 8. Mollier h, s-Diagram for Steam p ? 100MPa; 50 C ? t ? 800 C.- Fig.9. Mollier h, s-Diagram for Compressed Water p ? 150MPa; -2 C ? t ? 20 C.- Fig. 10. Mollier h, s-Diagram for Compressed Water p ? 1100 MPa; -22 C ? t ? 72 C.- Fig. 11. Mollier h, s-Diagram for Compressed Water p ? 2900MPa; -22 C ? t ? 420 C.
Other Titles: Wasserdampftafeln
Responsibility: edited by Ulrich Grigull, Johannes Straub, Peter Schiebener.

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