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A first comparison of TROPOMI aerosol layer height (ALH) to CALIOP data
The TROPOspheric Monitoring Instrument (TROPOMI) level-2 aerosol layer height (ALH) product has n...
S Nanda, M de Graaf, JP Veefkind, MC Sneep, M ter Linden, J Sun, PF Levelt | Status: published | Journal: Atmospheric Measurement Techniques | Volume: 13 | Year: 2019 | First page: 3043 | Last page: 3059 | doi: 10.5194/amt-13-3043-2020
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Validation and evaluation of SEVIRI volcanic ash heights
The April-May 2010 eruptions of the Icelandic volcano Eyjafjallajokull provided a clear example o...
A.T.J. de Laat and R.J. van der A | Year: 2012 | Pages: 62
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An investigation of the representative heights for atmospheric motion vectors
The objective of this study is to find out the reason for the biases which exist in the cloud hei...
R. Dlhopolsky and A. Feijt | Year: 2003 | Pages: 32
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The 2018 fire season in North America as seen by TROPOMI: aerosol layer height validation and evaluation of model-derived plume heights
Before the launch of the TROPOspheric Moni- toring Instrument (TROPOMI), only two other satellite...
G Griffin, C Sioris, J Chen, N Dickson, A Kovachik, M de Graaf, S Nanda, JP Veefkind, E Dammers, CA McLinden, P Makar | Status: published | Journal: Atmospheric Measurement Techniques | Volume: 13 | Year: 2020 | First page: 1427 | Last page: 1445 | doi: 10.5194/amt-13-1427-2020
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Overview of data assimilation methods
We present the data assimilation approach, which provides a framework for combining observations ...
G Hakim, J Annan, S Bronniman, M Crucifix, T Edwards, H Goosse, A Paul, G van der Schrier, M Widmann | Journal: Pages Newsletter | Volume: 21 | Year: 2013 | First page: 72 | Last page: 73
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