Article ID Journal Published Year Pages File Type
5429189 Journal of Quantitative Spectroscopy and Radiative Transfer 2012 18 Pages PDF
Abstract

This paper lays down the theoretical bases and the methods used in the Fast Optimal Retrievals on Layers for IASI (FORLI) software, which is developed and maintained at the “Université Libre de Bruxelles” (ULB) with the support of the “Laboratoire Atmosphères, Milieux, Observations Spatiales” (LATMOS) to process radiance spectra from the Infrared Atmospheric Sounding Interferometer (IASI) in the perspective of local to global chemistry applications. The forward radiative transfer model (RTM) and the retrieval approaches are formulated and numerical approximations are described. The aim of FORLI is near-real-time provision of global scale concentrations of trace gases from IASI, either integrated over the altitude range of the atmosphere (total columns) or vertically resolved. To this end, FORLI uses precalculated table of absorbances. At the time of writing three gas-specific versions of this algorithm have been set up: FORLI-CO, FORLI-O3 and FORLI-HNO3. The performances of each are reviewed and illustrations of results and early validations are provided, making the link to recent scientific publications. In this paper we stress the challenges raised by near-real-time processing of IASI, shortly describe the processing chain set up at ULB and draw perspectives for future developments and applications.

► This paper describes the FORLI radiative transfer and retrieval code. ► FORLI is a dedicated software for the IASI satellite mission. ► Currently three versions of FORLI have been set up, for O3, CO and HNO3. All are described here. ► FORLI is capable to process IASI radiance spectra in near-real-time. ► Various applications with FORLI products are emerging.

Related Topics
Physical Sciences and Engineering Chemistry Spectroscopy
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