Mineral dust observed with AERONET Sun photometer, Raman lidar, and in situ instruments during SAMUM 2006: Shape-independent particle properties

被引:55
|
作者
Mueller, D. [1 ]
Weinzierl, B. [2 ]
Petzold, A. [2 ]
Kandler, K. [3 ]
Ansmann, A. [1 ]
Mueller, T. [1 ]
Tesche, M. [1 ]
Freudenthaler, V. [4 ]
Esselborn, M. [2 ]
Heese, B. [1 ]
Althausen, D. [1 ]
Schladitz, A. [1 ]
Otto, S. [5 ]
Knippertz, P. [6 ]
机构
[1] Leibniz Inst Tropospher Res, D-04318 Leipzig, Germany
[2] Deutsch Zentrum Luft & Raumfahrt, Inst Phys Atmosphare, D-82234 Wessling, Germany
[3] Tech Univ Darmstadt, Inst Angew Geowissensch, Darmstadt, Germany
[4] Univ Munich, Inst Meteorol, D-80333 Munich, Germany
[5] Deutsch Zentrum Luft & Raumfahrt, Inst Method Fernerkundung, D-82234 Wessling, Germany
[6] Johannes Gutenberg Univ Mainz, Inst Atmospher Phys, Mainz, Germany
关键词
AEROSOL OPTICAL-PROPERTIES; SAHARAN DUST; SIZE DISTRIBUTION; REFRACTIVE-INDEX; NON-SPHERICITY; ABSORPTION; SCATTERING; MOROCCO; RETRIEVAL; SATELLITE;
D O I
10.1029/2009JD012520
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
Aerosol Robotic Network (AERONET) Sun photometer observations were carried out at Ouarzazate, Morocco, during the Saharan Mineral Dust Experiment (SAMUM) 2006. Data from one measurement day, 19 May 2006, are used to derive particle optical and microphysical parameters with AERONET's latest version of light-scattering model for non-spherical particle geometry. In our analysis we also make use of a novel measurement channel at 1638 nm wavelength. We compare the results to data products obtained by airborne high-spectral-resolution lidar, several ground-based Raman lidar, and airborne and ground-based in situ measurement platforms. We chose that specific measurement day because the dust plume was vertically well mixed. Extinction coefficients from AERONET Sun photometer and lidar observations and in situ measurements agree well. Angstrom exponents from Sun photometer and lidar are in close agreement, too. Airborne in situ measurements of dust particle size distributions show larger effective radii than inferred from the AERONET data. Complex refractive indices that are derived with the AERONET algorithm differ from the values obtained with different independent techniques employed in our study. The single-scattering albedo was derived from the airborne observations of particle size distributions and complex refractive indices. Single-scattering albedo differs to the value inferred from the AERONET data. The differences may be attributed to the different effective radii that we obtained from the various techniques. The differences between the data products from the various measurement platforms, however, cannot be generalized, as we could only test data for one measurement day. An analysis of additional measurements is under way.
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页数:18
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