Litcius/Paper detail

Use of Microwave Radiances from Metop-C and Fengyun-3 C/D Satellites for a Northern European Limited-area Data Assimilation System

Magnus Lindskog, Adam Dybbroe, Roger Randriamampianina

2021Advances in Atmospheric Sciences16 citationsDOIOpen Access PDF

Abstract

Abstract MetCoOp is a Nordic collaboration on operational Numerical Weather Prediction based on a common limited-area km-scale ensemble system. The initial states are produced using a 3-dimensional variational data assimilation scheme utilizing a large amount of observations from conventional in-situ measurements, weather radars, global navigation satellite system, advanced scatterometer data and satellite radiances from various satellite platforms. A version of the forecasting system which is aimed for future operations has been prepared for an enhanced assimilation of microwave radiances. This enhanced data assimilation system will use radiances from the Microwave Humidity Sounder, the Advanced Microwave Sounding Unit-A and the Micro-Wave Humidity Sounder-2 instruments on-board the Metop-C and Fengyun-3 C/D polar orbiting satellites. The implementation process includes channel selection, set-up of an adaptive bias correction procedure, and careful monitoring of data usage and quality control of observations. The benefit of the additional microwave observations in terms of data coverage and impact on analyses, as derived using the degree of freedom of signal approach, is demonstrated. A positive impact on forecast quality is shown, and the effect on the precipitation for a case study is examined. Finally, the role of enhanced data assimilation techniques and adaptions towards nowcasting are discussed.

Topics & Concepts

Data assimilationEnvironmental scienceNumerical weather predictionSatelliteMeteorologyRemote sensingAdvanced Microwave Sounding UnitDepth soundingNowcastingMicrowaveScatterometerComputer scienceGeologyWind speedGeographyTelecommunicationsAerospace engineeringEngineeringOceanographyMeteorological Phenomena and SimulationsClimate variability and modelsPrecipitation Measurement and Analysis