\u3cp\u3eA three-dimensional global ozone distribution has been derived from assimilation of ozone profiles that were observed by satellites. By simultaneous assimilation of ozone profiles retrieved from the nadir looking satellite instruments Global Ozone Monitoring Experiment 2 (GOME-2) and Ozone Monitoring Instrument (OMI), which measure the atmosphere at different times of the day, the quality of the derived atmospheric ozone field has been improved. The assimilation is using an extended Kalman filter in which chemical transport model TM5 has been used for the forecast. The combined assimilation of both GOME-2 and OMI improves upon the assimilation results of a single sensor. The new assimilation system has been demonstrated by processi...
Abstract. A two-dimensional model for advection and data assimilation of total-ozone data has been d...
A two-dimensional model for advection and data assimilation of total-ozone data has been developed. ...
We introduce a Multi-mOdel Multi-cOnstituent Chemical data assimilation (MOMO-Chem) framework that d...
A three-dimensional global ozone distribution has been derived from assimilation of ozone profiles t...
In this paper, a near-real-time approach to data assimilation for the estimation of the three-dimens...
A data-assimilation scheme to assimilate the Global Ozone Monitoring Experiment (GOME) total-ozone d...
Ozone (O3) directly and indirectly affects human health (depending on the altitude it is sometimes r...
Abstract We present the results from a global 0.56°‐resolution chemical data assimilation that integ...
A single coherent total ozone dataset, called the Multi Sensor Reanalysis (MSR), has been created fr...
We have developed an advanced chemical data assimilation system to combine observations of chemical ...
The stratospheric ozone layer protects life on Earth from the harmful effects of solar ultravioiet r...
International audienceThe availability of near-real time ozone observations from satellite instrumen...
International audienceAccurate and temporally resolved fields of free-troposphere ozone are of major...
Abstract. A two-dimensional model for advection and data assimilation of total-ozone data has been d...
A two-dimensional model for advection and data assimilation of total-ozone data has been developed. ...
We introduce a Multi-mOdel Multi-cOnstituent Chemical data assimilation (MOMO-Chem) framework that d...
A three-dimensional global ozone distribution has been derived from assimilation of ozone profiles t...
In this paper, a near-real-time approach to data assimilation for the estimation of the three-dimens...
A data-assimilation scheme to assimilate the Global Ozone Monitoring Experiment (GOME) total-ozone d...
Ozone (O3) directly and indirectly affects human health (depending on the altitude it is sometimes r...
Abstract We present the results from a global 0.56°‐resolution chemical data assimilation that integ...
A single coherent total ozone dataset, called the Multi Sensor Reanalysis (MSR), has been created fr...
We have developed an advanced chemical data assimilation system to combine observations of chemical ...
The stratospheric ozone layer protects life on Earth from the harmful effects of solar ultravioiet r...
International audienceThe availability of near-real time ozone observations from satellite instrumen...
International audienceAccurate and temporally resolved fields of free-troposphere ozone are of major...
Abstract. A two-dimensional model for advection and data assimilation of total-ozone data has been d...
A two-dimensional model for advection and data assimilation of total-ozone data has been developed. ...
We introduce a Multi-mOdel Multi-cOnstituent Chemical data assimilation (MOMO-Chem) framework that d...