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A Fast Infrared Radiative Transfer Model for Overlapping CloudsA fast infrared radiative transfer model (FIRTM2) appropriate for application to both single-layered and overlapping cloud situations is developed for simulating the outgoing infrared spectral radiance at the top of the atmosphere (TOA). In FIRTM2 a pre-computed library of cloud reflectance and transmittance values is employed to account for one or two cloud layers, whereas the background atmospheric optical thickness due to gaseous absorption can be computed from a clear-sky radiative transfer model. FIRTM2 is applicable to three atmospheric conditions: 1) clear-sky, 2) single-layered ice or water cloud, and 3) two simultaneous cloud layers in a column (e.g., ice cloud overlying water cloud). Moreover, FIRTM2 outputs the derivatives (i.e., Jacobians) of the TOA brightness temperature with respect to cloud optical thickness and effective particle size. Sensitivity analyses have been carried out to assess the performance of FIRTM2 for two spectral regions, namely the longwave (LW) band (587.3 - 1179.5/cm) and the short-to-medium wave (SMW) band (1180.1 - 2228.9/cm). The assessment is carried out in terms of brightness temperature differences (BTD) between FIRTM2 and the well-known discrete ordinates radiative transfer model (DISORT), henceforth referred to as BTD (F-D). The BTD (F-D) values for single-layered clouds are generally less than 0.8 K. For the case of two cloud layers (specifically ice cloud over water cloud), the BTD(F-D) values are also generally less than 0.8 K except for the SMW band for the case of a very high altitude (>15 km) cloud comprised of small ice particles. Note that for clear-sky atmospheres, FIRTM2 reduces to the clear-sky radiative transfer model that is incorporated into FIRTM2, and the errors in this case are essentially those of the clear-sky radiative transfer model.
Document ID
20080006490
Acquisition Source
Langley Research Center
Document Type
Preprint (Draft being sent to journal)
Authors
Niu, Jianguo
(Texas A&M Univ. College Station, TX, United States)
Yang, Ping
(Texas A&M Univ. College Station, TX, United States)
Huang, Huang-Lung
(Wisconsin Univ. Madison, WI, United States)
Davies, James E.
(Wisconsin Univ. Madison, WI, United States)
Li, Jun
(Wisconsin Univ. Madison, WI, United States)
Baum, Bryan A.
(NASA Langley Research Center Hampton, VA, United States)
Hu, Yong X.
(NASA Langley Research Center Hampton, VA, United States)
Date Acquired
August 24, 2013
Publication Date
January 1, 2006
Subject Category
Meteorology And Climatology
Funding Number(s)
CONTRACT_GRANT: NSF ATM-0239605
CONTRACT_GRANT: NNG04GL24G
Distribution Limits
Public
Copyright
Public Use Permitted.
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