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A fast radiative‐transfer model for the assimilation of MIPAS limb radiances: Accounting for horizontal gradients
Author(s) -
Bormann N.,
Healy S. B.
Publication year - 2006
Publication title -
quarterly journal of the royal meteorological society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.744
H-Index - 143
eISSN - 1477-870X
pISSN - 0035-9009
DOI - 10.1256/qj.05.160
Subject(s) - radiance , radiative transfer , atmospheric radiative transfer codes , tangent , environmental science , parametrization (atmospheric modeling) , remote sensing , atmosphere (unit) , meteorology , physics , optics , geology , mathematics , geometry
We investigate the influence of horizontal structure in the atmosphere on the simulation of emitted infrared limb radiances from the Envisat‐MIPAS instrument, and examine a pragmatic extension of the regression‐based RTMIPAS fast radiative‐transfer model to deal with horizontal atmospheric structure. The extension of RTMIPAS takes into account the horizontal structure at the ray‐tracing step which is used to determine scene temperatures, path lengths, and other conditions along the ray. But the transmittance parametrization used in the extension is based on regression models previously derived from a set of horizontally homogeneous atmospheres. This reduces the computational effort required for the derivation of the regression models. The effects of horizontal gradients in the atmosphere on MIPAS radiances are examined by comparing radiance spectra simulated with RTMIPAS to line‐by‐line equivalents and to real MIPAS observations. It is shown that neglecting horizontal structure in the atmosphere can introduce errors in the radiance simulation that exceed by far the instrument noise, particularly for lower tangent heights and for strongly absorbing spectral regions. The extension of the fast radiative‐transfer model can substantially reduce this error, and for tangent pressures less than 350 hPa (tangent heights greater than about 8 km) almost all error due to horizontal gradients is eliminated. In agreement with this, fast‐model radiances simulated from cross‐sections of the European Centre for Medium‐Range Weather Forecasts model compare significantly better to observed MIPAS limb radiances than radiances simulated under the assumption of horizontal homogeneity. This further confirms a considerable reduction in forward‐model error when horizontal atmospheric structure is taken into account. Copyright © 2006 Royal Meteorological Society

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