Saturated Vapour Pressure (kPa) May

R.E. Schulze;M. Maharaj

Description

The average energy of the molecules in a liquid such as water is governed by temperature. The higher the temperature, the higher the average energy. Some molecules have higher energies than the average, and if they are on the surface of the liquid, can move fast enough to escape the inter-molecular attractive forces holding the liquid together. They then evaporate from the surface of the liquid. This process can continue until the space above the liquid is saturated with water molecules. Equilibrium is then reached with as many molecules leaving the surface of water as are re-entering it. At this point the pressure exerted by that vapour is called the saturated vapour pressure. The symbol used for saturated vapour pressure is ea and the unit of pressure is kPa. Since the molecular kinetic energy is greater at higher temperature, more molecules can escape the surface and the saturated vapour pressure is correspondingly higher. This relationship is illustrated in the shaded box.Daily values of saturated vapour pressure were computed from the 50 year daily time series of temperature generated for South Africa at each one of 429 700 raster points at one arc minute interval, using techniques developed by Schulze and Maharaj (2004).

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Mentions (0)

Metrics

Dataset Index

0.3

FAIR Score

59%

Citations

0

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

University of KwaZulu-Natal

License

Attribution-ShareAlike 4.0 International (CC BY-SA 4.0)

Assigned Domain

Subfield

Global and Planetary Change

Field

Environmental Science

Domain

Physical Sciences

Confidence Score

48%

Source

Scholar Data Model

Keywords

saturated vapour pressureevaporationinter-molecular forcesdaily temperaturemolecular energykinetic energyWeather and climateRegional and seasonal variabilityCommercial forestryPhysiological stress driversAgricultureBiophysical variablesBiodiversityPhysical environment

Normalization Factors

FT

61.54

CTw

1.00

MTw

1.00