Articles | Volume 7, issue 6
https://doi.org/10.5194/amt-7-1629-2014
https://doi.org/10.5194/amt-7-1629-2014
Research article
 | 
10 Jun 2014
Research article |  | 10 Jun 2014

The mobile Water vapor Aerosol Raman LIdar and its implication in the framework of the HyMeX and ChArMEx programs: application to a dust transport process

P. Chazette, F. Marnas, and J. Totems

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Cited articles

Agusti-Panareda, A., Vasiljevic, D., Beljaars, A., Bock, O., Guichard, F., Nuret, M., Lafore, J.-P., Andersson, E., Bechtold, P., Fink, A., Hersbach, H., Garcia Mendez, A., Ngamini, J.-B., Parker, D. J., Redelsperger, J. L., and Tompkins, A.: Radiosonde humidity bias correction over the West African region for the special AMMA reanalysis at ECMWF, Q. J. Roy. Meteorol. Soc., 135, 595–617, https://doi.org/10.1002/qj.396, 2009.
Ansmann, A., Riebesell, M., Wandinger, U., Weitkamp, C., Voss, E., Lahmann, W., and Michaelis, W.: Combined raman elastic-backscatter LIDAR for vertical profiling of moisture, aerosol extinction, backscatter, and LIDAR ratio, Appl. Phys., B55, 18–28, 1992.
Balis, D. S., Amiridis, V., Nickovic, S., Papayannis, A., and Zerefos, C.: Optical properties of Saharan dust layers as detected by a Raman lidar at Thessaloniki, Greece, J. Geophys. Res., 31, L13104, https://doi.org/10.1029/2004GL019881, 2004.
Bock, O. and Nuret, M.: Verification of NWP model analyses and radiosonde humidity data with GPS precipitable water vapor estimates during AMMA, Weather Forecast., 24, 1085–1101, https://doi.org/10.1175/2009WAF2222239.1, 2009.
Boucher, O. and Anderson, L.: General circulation model assessment of the sensitivity of direct climate forcing by anthropogenic sulfate aerosols to aerosol size and chemistry, J. Geophys. Res., 100, 26117–26134, 1995.