Relative Humidity¶
Performs a variable conversion from specificHumidity (or mixing ratio), temperature, and pressure to relative humidity. The newly calculated variable is included in the same obs space.
Transform: RelativeHumidity
obs filters:
- filter: Variable Transforms
Transform: RelativeHumidity
Method: UKMO
Formulation: Sonntag
Observation parameters needed (JEDI name)
specificHumidity (\(q\))
airTemperature (\(T\))
pressure or stationPressure (\(P\))
waterVaporMixingRatio (\(w\)) (needed when using Method: UKMOmixingratio)
Method(s) available
Various methods are available, shared across all center options. (Any setting of METHOD
will result in using formulations associated with the method.)
Setting METHOD
can be omitted.
- options:
methodDEFAULT
methodUKMOmixingratio
methodUKMO
The relative humidity (\(Rh\)) is retrieved as follow:
with \(w_{sat}\) (saturated water vapor mixing ratio) derived using \(e_{sat}\) (saturated vapor pressure):
and \(w\) (water vapor mixing ratio) derived using \(q\) (specific humidity):
\(\epsilon\) is ratio of the gas constant for dry air (\(R_{d}\)) over the gas constant for water vapor (\(R_{v}\)). The value of \(e_{sat}\) (saturated vapor pressure) is derived using Saturated Vapor Pressure from T.
Formulation(s) available
Various formulations are available to derive Saturated Vapor Pressure from T.
Specific Humidity¶
Performs a variable conversion from relative humidity, temperature, and pressure to specific humidity. The newly calculated variable is included in the same obs space.
Transform: SpecificHumidity
obs filters:
- filter: Variable Transforms
Transform: SpecificHumidity
Method: UKMO
Formulation: Sonntag
Observation parameters needed (JEDI name)
relativeHumidity (\(Rh\))
airTemperature (\(T\))
pressure or stationPressure (\(P\))
Method(s) available
Only one method is avalable, shared accross all center options. (Any setting of METHOD
will result
in using this unique method.) Setting METHOD
can be omitted.
The specific humidity (\(q\)) is retrieved as follows:
where water vapor mixing ratio (\(w\)) is derived from relative humidity (\(Rh\))
\[w = Rh \times w_{sat}\]
with \(w_{sat}\) (saturated water vapor mixing ratio) derived using \(e_{sat}\) (saturated vapor pressure):
\[w_{sat} = \epsilon \times e_{sat}/(P-e_{sat})\]
With \(\epsilon\) is ratio of the gas constant for dry air (\(R_{d}\)) over the gas constant for water vapor (\(R_{v}\)). The value of \(e_{sat}\) (saturated vapor pressure) is derived using Saturated Vapor Pressure from T.
Formulation(s) available
Various formulation are available to derive Saturated Vapor Pressure from T.