Title :
Rain Effects on ASCAT-Retrieved Winds: Toward an Improved Quality Control
Author :
Portabella, Marcos ; Stoffelen, Ad ; Lin, Wenming ; Turiel, Antonio ; Verhoef, Anton ; Verspeek, Jeroen ; Ballabrera-Poy, Joaquim
Author_Institution :
Unidad de Tecnol. Marina (UTM), CSIC, Barcelona, Spain
fDate :
7/1/2012 12:00:00 AM
Abstract :
The quality of the Ku-band scatterometer-derived winds is known to be degraded by the presence of rain. Little work has been done in characterizing the impact of rain on C-band scatterometer winds, such as those from the Advanced Scatterometer (ASCAT) onboard Metop-A. In this paper, the rain impact on the ASCAT operational level 2 quality control (QC) and retrieved winds is investigated using the European Centre for Medium-range Weather Forecasts (ECMWF) model winds, the Tropical Rainfall Measuring Mission´s (TRMM) Microwave Imager (TMI) rain data, and tropical buoy wind and precipitation data as reference. In contrast to Ku-band, it is shown that C-band is much less affected by direct rain effects, such as ocean splash, but effects of increased wind variability appear to dominate ASCAT wind retrieval. ECMWF winds do not well resolve the airflow under rainy conditions. ASCAT winds do but also show artifacts in both the wind speed and wind direction distributions for high rain rates (RRs). The operational QC proves to be effective in screening these artifacts but at the expense of many valuable winds. An image-processing method, known as singularity analysis, is proposed in this paper to complement the current QC, and its potential is illustrated. QC at higher resolution is also expected to result in improved screening of high RRs.
Keywords :
atmospheric techniques; geophysical image processing; ocean waves; quality control; rain; remote sensing; wind; ASCAT wind retrieval; C-band scatterometer winds; ECMWF model winds; Ku-band scatterometer-derived winds; METOP-A; TRMM microwave imager; advanced scatterometer; airflow; image processing method; ocean splash; precipitation data; quality control; rain effect; singularity analysis; tropical buoy wind; wind direction distribution; wind speed; wind variability; Maximum likelihood estimation; Radar measurements; Rain; Sea surface; Spaceborne radar; Wind; Geophysical inverse problems; image processing; microwave measurements; quality control; remote sensing;
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
DOI :
10.1109/TGRS.2012.2185933