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MODTRAN4 radiative transfer modeling for atmospheric correction

Alexander BerkGail P. AndersonLawrence S. BernsteinPrabhat K. AcharyaH. DotheMichael W. MatthewSteven M. Adler‐GoldenJames H. ChetwyndSteven C. RichtsmeierBrian PukallClark L. AllredLaila S. JeongMichael L. Hoke

Abstract

MODTRAN4, the latest publicly released version of MODTRAN, provides many new and important options for modeling atmospheric radiation transport. A correlated-k algorithm improves multiple scattering, eliminates Curtis-Godson averaging, and introduces Beer's Law dependencies into the band model. An optimized 15 cm<SUP>-1</SUP> band model provides over a 10-fold increase in speed over the standard MODTRAN 1 cm<SUP>-1</SUP> band model with comparable accuracy when higher spectral resolution results are unnecessary. The MODTRAN ground surface has been upgraded to include the effects of Bidirectional Reflectance Distribution Functions (BRDFs) and Adjacency. The BRDFs are entered using standard parameterizations and are coupled into line-of-sight surface radiance calculations.

Atmospheric aerosols and cloudsMeteorological Phenomena and SimulationsAtmospheric and Environmental Gas DynamicsMODTRANRadianceAtmospheric modelRadiative transferRemote sensingComputer scienceAtmospheric opticsAtmospheric radiative transfer codesAtmospheric modelsComputational physics

Funding

  • Air Force Research Laboratory
Citations
444
FWCI
2.89
field-weighted impact
References
13
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90%
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Citations per year
References
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Radiative transfer for inhomogeneous atmospheres: RRTM, a validated correlated‐k model for the longwave
Journal of Geophysical Research Atmospheres · 1997 · 8,619 citations
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MODTRAN4 radiative transfer modeling for atmospheric correction
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