New Setup of the UAS ALADINA for Measuring Boundary Layer Properties, Atmospheric Particles and Solar Radiation

被引:33
作者
Baerfuss, Konrad [1 ]
Paetzold, Falk [1 ]
Altstaedter, Barbara [1 ]
Kathe, Endres [1 ]
Nowak, Stefan [1 ]
Bretschneider, Lutz [1 ]
Bestmann, Ulf [1 ]
Lampert, Astrid [1 ]
机构
[1] Tech Univ Carolo Wilhelmina Braunschweig, Inst Flight Guidance, D-38108 Braunschweig, Germany
关键词
UAS; RPAS; ALADINA; atmospheric boundary layer; airborne turbulence; radiation measurements; aerosol measurements; field experiments; validation methods; UNMANNED AERIAL VEHICLE; TURBULENCE MEASUREMENTS; TEMPERATURE SENSORS; FREQUENCY-RESPONSE; RESEARCH AIRCRAFT; SYSTEM; DISTRIBUTIONS; TRANSITION; AFTERNOON; AEROSONDE;
D O I
10.3390/atmos9010028
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The unmanned research aircraft ALADINA (Application of Light-weight Aircraft for Detecting in situ Aerosols) has been established as an important tool for boundary layer research. For simplified integration of additional sensor payload, a flexible and reliable data acquisition system was developed at the Institute of Flight Guidance, Technische Universitat (TU) Braunschweig. The instrumentation consists of sensors for temperature, humidity, three-dimensional wind vector, position, black carbon, irradiance and atmospheric particles in the diameter range of ultra-fine particles up to the accumulation mode. The modular concept allows for straightforward integration and exchange of sensors. So far, more than 200 measurement flights have been performed with the robustly-engineered system ALADINA at different locations. The obtained datasets are unique in the field of atmospheric boundary layer research. In this study, a new data processing method for deriving parameters with fast resolution and to provide reliable accuracies is presented. Based on tests in the field and in the laboratory, the limitations and verifiability of integrated sensors are discussed.
引用
收藏
页数:21
相关论文
共 49 条
[1]   ALADINA - an unmanned research aircraft for observing vertical and horizontal distributions of ultrafine particles within the atmospheric boundary layer [J].
Altstaedter, B. ;
Platis, A. ;
Wehner, B. ;
Scholtz, A. ;
Wildmann, N. ;
Hermann, M. ;
Kaethner, R. ;
Baars, H. ;
Bange, J. ;
Lampert, A. .
ATMOSPHERIC MEASUREMENT TECHNIQUES, 2015, 8 (04) :1627-1639
[2]  
Barfuss K., 2017, SEDOO OMP, DOI [10.6096/baobab-dacciwa.1701, DOI 10.6096/BAOBAB-DACCIWA.1701]
[3]   Proof of concept for turbulence measurements with the RPAS SUMO during the BLLAST campaign [J].
Baserud, Line ;
Reuder, Joachim ;
Jonassen, Marius O. ;
Kral, Stephan T. ;
Paskyabi, Mostafa B. ;
Lothon, Marie .
ATMOSPHERIC MEASUREMENT TECHNIQUES, 2016, 9 (10) :4901-4913
[4]   Measurements of atmospheric aerosol vertical distributions above Svalbard, Norway, using unmanned aerial systems (UAS) [J].
Bates, T. S. ;
Quinn, P. K. ;
Johnson, J. E. ;
Corless, A. ;
Brechtel, F. J. ;
Stalin, S. E. ;
Meinig, C. ;
Burkhart, J. F. .
ATMOSPHERIC MEASUREMENT TECHNIQUES, 2013, 6 (08) :2115-2120
[5]   Observations of the Early Evening Boundary-Layer Transition Using a Small Unmanned Aerial System [J].
Bonin, Timothy ;
Chilson, Phillip ;
Zielke, Brett ;
Fedorovich, Evgeni .
BOUNDARY-LAYER METEOROLOGY, 2013, 146 (01) :119-132
[6]  
Calmer R., 2017, ATMOS MEAS TECH DISC, DOI [10.5194/amt-2017-233, DOI 10.5194/AMT-2017-233]
[7]   Observations of the atmosphere and surface state over Terra Nova Bay, Antarctica, using unmanned aerial systems [J].
Cassano, John J. ;
Seefeldt, Mark W. ;
Palo, Scott ;
Knuth, Shelley L. ;
Bradley, Alice C. ;
Herrman, Paul D. ;
Kernebone, Peter A. ;
Logan, Nick J. .
EARTH SYSTEM SCIENCE DATA, 2016, 8 (01) :115-126
[8]   Airborne turbulence measurements in the lower troposphere onboard the research aircraft Dornier 128-6, D-IBUF [J].
Corsmeier, U ;
Hankers, R ;
Wieser, A .
METEOROLOGISCHE ZEITSCHRIFT, 2001, 10 (04) :315-329
[9]   Applications of aerosondes in the Arctic [J].
Curry, JA ;
Maslanik, J ;
Holland, G ;
Pinto, J .
BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY, 2004, 85 (12) :1855-1861
[10]   The Pilatus unmanned aircraft system for lower atmospheric research [J].
de Boer, Gijs ;
Palo, Scott ;
Argrow, Brian ;
LoDolce, Gabriel ;
Mack, James ;
Gao, Ru-Shan ;
Telg, Hagen ;
Trussel, Cameron ;
Fromm, Joshua ;
Long, Charles N. ;
Bland, Geoff ;
Maslanik, James ;
Schmid, Beat ;
Hock, Terry .
ATMOSPHERIC MEASUREMENT TECHNIQUES, 2016, 9 (04) :1845-1857