Articles | Volume 11, issue 2
https://doi.org/10.5194/gmd-11-561-2018
https://doi.org/10.5194/gmd-11-561-2018
Model description paper
 | 
08 Feb 2018
Model description paper |  | 08 Feb 2018

BEATBOX v1.0: Background Error Analysis Testbed with Box Models

Christoph Knote, Jérôme Barré, and Max Eckl

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Cited articles

Anderson, J. L.: A local least squares framework for ensemble filtering, Mon. Weather Rev., 131, 634–642, 2003. 
Anderson, J. L.: An adaptive covariance inflation error correction algorithm for ensemble filters, Tellus A, 59, 210–224, 2007. 
Archibald, A. T., Jenkin, M. E., and Shallcross, D. E.: An isoprene mechanism intercomparison, Atmos. Environ., 44, 5356–5364, https://doi.org/10.1016/j.atmosenv.2009.09.016, 2010. 
Arnold, C. P. and Dey, C. H.: Observing-systems simulation experiments: Past, present, and future, B. Amer. Meteorol. Soc., 67, 687–695, 1986. 
Barré, J., Edwards, D., Worden, H., Silva, A. D., and Lahoz, W.: On the feasibility of monitoring carbon monoxide in the lower troposphere from a constellation of northern hemisphere geostationary satellites (part 1). Atmos. Environ., 113, 63–77, 2015. 
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Short summary
The Background Error Analysis Testbed with Box Models (BEATBOX) is a toy model to investigate the effects of data assimilation on systems like tropospheric photochemistry in a box model fashion. We present the model system and show its application in a case study using data from a recent field campaign and employing commonly used tropospheric chemistry mechanisms.
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