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    Model ID: M00047
    Model Name: Line-by-line radiative transfer model
    Encoders:
    No. Name Affiliations
    Key words: Radiative transfer, Transmittance.
    Model Type: Radiation transfer theory
    Latest Modified:
    Submission Date:
    Abstract: LBLRTM attributes provide spectral radiance calculations with accuracies consistent with the measurements against which they are validated and with computational times that greatly facilitate the application of the line-by-line approach to current radiative transfer applications. LBLRTM's heritage is in FASCODE.
    Equation:
    1
    Name: beginning wavenumber value for the calculation
    Parameter type: float
    Physic Entity: beginning wavenumber value for the calculation
    2
    Name: ending wavenumber value for the calculation
    Parameter type: float
    Physic Entity: ending wavenumber value for the calculation
    3
    Name: temperature of boundary (K)
    Parameter type: Float
    Physic Entity: temperature of boundary (K)
    4
    Name: boundary emissivity
    Parameter type: Float
    Physic Entity: boundary emissivity
    5
    Name: atmospheric profile model
    Parameter type: int
    Physic Entity: atmospheric profile model
    6
    Name: latitude of location of calculation (degrees)
    Parameter type: float
    Physic Entity: latitude of location of calculation (degrees)
    7
    Name: observer altitude (km)
    Parameter type: float
    Physic Entity: observer altitude (km)
    8
    Name: the end point altitude
    Parameter type: float
    Physic Entity: the end point altitude
    9
    Name: zenith angle at H1
    Parameter type: float
    Physic Entity: zenith angle at H1
    10
    Name: Type of output Convolved with
    Parameter type: int
    Physic Entity: Absorbance/Transmittance/Radiance Convolved with
    11
    Name: scanning function
    Parameter type: int
    Physic Entity: scanning function
    Title: Atmospheric radiative transfer modeling: a summary of the AER codes
    Authors:
    No. Name Affiliations
    1
    S.A. Clough
    2
    M.W. Shephard
    3
    E.J. Mlawer
    Cited by:
    Abstract:

    Equation