Phase diagrams of water: Difference between revisions

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(Added section on the phase diagram of the TIP4P/2005 model)
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{{Stub-water}}
{{Stub-water}}
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=Experimental=
=Experimental=
====References====
The following are references for the [[equations of state | equation of state]] of [[water]].
 
==References==
#'''The phase diagram of water to 45,000 kg/cm<sup>2</sup>'''. P. W. Bridgman, [http://dx.doi.org/10.1063/1.1749971 Journal of Chemical Physics '''5''': 964-966 (1937)]
#    A. Saul and W. Wagner "International Equations for the Saturation Properties of Ordinary Water Substance", Journal of Physical and Chemical Reference Data '''16''' pp. 893-901 (1987)
#    H. Sato, M. Uematsu,  K. Watanabe,      A. Saul and W. Wagner "New International Skeleton Tables for the Thermodynamic Properties of Ordinary Water Substance", Journal of Physical and Chemical Reference Data '''17''' pp. 1439-1540 (1988)
#    A. Saul and W. Wagner "A Fundamental Equation for Water Covering the Range from the Melting Line to 1273 K at Pressures up to 25 000 MPa", Journal of Physical and Chemical Reference Data '''18''' pp. 1537-1564 (1989)
#    H. Sato, K. Watanabe,      J. M. H. Levelt Sengers, J. S. Gallagher, P. G. Hill, J. Straub and W. Wagner "Sixteen Thousand Evaluated Experimental Thermodynamic Property Data for Water and Steam", Journal of Physical and Chemical Reference Data '''20''' pp. 1023-1044 (1991)
#    Wolfgang Wagner and A. Pruss "International Equations for the Saturation Properties of Ordinary Water Substance. Revised According to the International Temperature Scale of 1990. Addendum to J. Phys. Chem. Ref. Data 16, 893 (1987)", Journal of Physical and Chemical Reference Data '''22''' pp. 783-787 (1993)
#    Wolfgang Wagner, A. Saul, and A. Pruss "International Equations for the Pressure Along the Melting and Along the Sublimation Curve of Ordinary Water Substance", Journal of Physical and Chemical Reference Data '''23''' pp. 515-527 (1994)
#[http://dx.doi.org/10.1063/1.1461829    W. Wagner and A. Pruß "The IAPWS Formulation 1995 for the Thermodynamic Properties of Ordinary Water Substance for General and Scientific Use", Journal of Physical and Chemical Reference Data '''31''' pp. 387-535 (2002)]
#'''Interactive 3D phase diagrams using Jmol'''. A. Herráez, R. M. Hanson, and L. Glasser, [http://jchemed.chem.wisc.edu/journal/issues/2009/May/abs566.html Journal of Chemical Education '''86''': 566 (2009)] and [http://biomodel.uah.es/Jmol/plots/phase-diagrams/ website]
#'''Interactive 3D phase diagrams using Jmol'''. A. Herráez, R. M. Hanson, and L. Glasser, [http://jchemed.chem.wisc.edu/journal/issues/2009/May/abs566.html Journal of Chemical Education '''86''': 566 (2009)] and [http://biomodel.uah.es/Jmol/plots/phase-diagrams/ website]
#'''Water, water, everywhere: Phase diagrams of ordinary water substance'''. L. Glasser, [http://jchemed.chem.wisc.edu/Journal/Issues/2004/Mar/abs414.html Journal of Chemical Education '''81''': 414-418 (2004)]
#'''Water, water, everywhere: Phase diagrams of ordinary water substance'''. L. Glasser, [http://jchemed.chem.wisc.edu/Journal/Issues/2004/Mar/abs414.html Journal of Chemical Education '''81''': 414-418 (2004)]
#'''The phase diagram of water to 45,000 kg/cm<sup>2</sup>'''. P. W. Bridgman, [http://dx.doi.org/10.1063/1.1749971 Journal of Chemical Physics '''5''': 964-966 (1937)]
=Theoretical=
=Theoretical=
==TIP4P/2005 model==
==TIP4P/2005 model==
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<references/>
<references/>
#'''Phase diagram of water from computer simulation'''. E. Sanz, C. Vega, J. L. F. Abascal, and L. G. MacDowell, [http://dx.doi.org/10.1103/PhysRevLett.92.255701 Physical Review Letters '''92''': 255701 (2004)]
#'''Phase diagram of water from computer simulation'''. E. Sanz, C. Vega, J. L. F. Abascal, and L. G. MacDowell, [http://dx.doi.org/10.1103/PhysRevLett.92.255701 Physical Review Letters '''92''': 255701 (2004)]
==External links==
*[http://www.iapws.org/ The International Association for the Properties of Water and Steam]
[[category:phase diagrams]]
[[category:phase diagrams]]
[[category:water]]
[[category:water]]
[[category: equations of state]]

Revision as of 12:03, 5 November 2009

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Experimental

The following are references for the equation of state of water.

References

  1. The phase diagram of water to 45,000 kg/cm2. P. W. Bridgman, Journal of Chemical Physics 5: 964-966 (1937)
  2. A. Saul and W. Wagner "International Equations for the Saturation Properties of Ordinary Water Substance", Journal of Physical and Chemical Reference Data 16 pp. 893-901 (1987)
  3. H. Sato, M. Uematsu, K. Watanabe, A. Saul and W. Wagner "New International Skeleton Tables for the Thermodynamic Properties of Ordinary Water Substance", Journal of Physical and Chemical Reference Data 17 pp. 1439-1540 (1988)
  4. A. Saul and W. Wagner "A Fundamental Equation for Water Covering the Range from the Melting Line to 1273 K at Pressures up to 25 000 MPa", Journal of Physical and Chemical Reference Data 18 pp. 1537-1564 (1989)
  5. H. Sato, K. Watanabe, J. M. H. Levelt Sengers, J. S. Gallagher, P. G. Hill, J. Straub and W. Wagner "Sixteen Thousand Evaluated Experimental Thermodynamic Property Data for Water and Steam", Journal of Physical and Chemical Reference Data 20 pp. 1023-1044 (1991)
  6. Wolfgang Wagner and A. Pruss "International Equations for the Saturation Properties of Ordinary Water Substance. Revised According to the International Temperature Scale of 1990. Addendum to J. Phys. Chem. Ref. Data 16, 893 (1987)", Journal of Physical and Chemical Reference Data 22 pp. 783-787 (1993)
  7. Wolfgang Wagner, A. Saul, and A. Pruss "International Equations for the Pressure Along the Melting and Along the Sublimation Curve of Ordinary Water Substance", Journal of Physical and Chemical Reference Data 23 pp. 515-527 (1994)
  8. W. Wagner and A. Pruß "The IAPWS Formulation 1995 for the Thermodynamic Properties of Ordinary Water Substance for General and Scientific Use", Journal of Physical and Chemical Reference Data 31 pp. 387-535 (2002)
  9. Interactive 3D phase diagrams using Jmol. A. Herráez, R. M. Hanson, and L. Glasser, Journal of Chemical Education 86: 566 (2009) and website
  10. Water, water, everywhere: Phase diagrams of ordinary water substance. L. Glasser, Journal of Chemical Education 81: 414-418 (2004)

Theoretical

TIP4P/2005 model

The phase diagram of the TIP4P/2005 model is given in a publication by Abascal, Sanz and Vega.

and for negative pressures in the publication

Liquid-vapour equilibria

Plastic crystal phases

Recent simulations have suggested the possibility of a plastic crystal phase or phases for water.

References

  1. Phase diagram of water from computer simulation. E. Sanz, C. Vega, J. L. F. Abascal, and L. G. MacDowell, Physical Review Letters 92: 255701 (2004)

External links