Publikationen


Evaluation of the Urban Climate Model PALM-4U over Hilly Terrain Using Wind and Turbulence Observations
Kiseleva, O.; Gantner, L.; Kalthoff, N.; Kossmann, M.; Holst, C.
2024. Meteorologische Zeitschrift, 33 (3), 177–198. doi:10.1127/metz/2024/1193
Impact of Dust Source Patchiness on the Existence of a Constant Dust Flux Layer During Aeolian Erosion Events
Dupont, S.; Klose, M.; Irvine, M. R.; González-Flórez, C.; Alastuey, A.; Bonnefond, J.-M.; Dagsson-Waldhauserova, P.; Gonzalez-Romero, A.; Hussein, T.; Lamaud, E.; Meyer, H.; Panta, A.; Querol, X.; Schepanski, K.; Vergara Palacio, S.; Wieser, A.; Yus-Díez, J.; Kandler, K.; Pérez García-Pando, C.
2024. Journal of Geophysical Research: Atmospheres, 129 (12), Art.Nr.e2023JD040657. doi:10.1029/2023JD040657
Exploring the daytime boundary layer evolution based on Doppler spectrum width from multiple coplanar wind lidars during CROSSINN
Babić, N.; Adler, B.; Gohm, A.; Lehner, M.; Kalthoff, N.
2024. Weather and Climate Dynamics, 5 (2), 609–631. doi:10.5194/wcd-5-609-2024
The impact of aerosols and model grid spacing on a supercell storm from Swabian MOSES 2021
Barthlott, C.; Czajka, B.; Kunz, M.; Saathoff, H.; Zhang, H.; Böhmländer, A.; Gasch, P.; Handwerker, J.; Kohler, M.; Wilhelm, J.; Wieser, A.; Hoose, C.
2024. Quarterly Journal of the Royal Meteorological Society, 150 (761), 2005–2027. doi:10.1002/qj.4687
Profiling the molecular destruction rates of temperature and humidity as well as the turbulent kinetic energy dissipation in the convective boundary layer
Wulfmeyer, V.; Senff, C.; Späth, F.; Behrendt, A.; Lange, D.; Banta, R. M.; Brewer, W. A.; Wieser, A.; Turner, D. D.
2024. Atmospheric Measurement Techniques, 17 (4), 1175 – 1196. doi:10.5194/amt-17-1175-2024
First implementation of a new cross-disciplinary observation strategy for heavy precipitation events from formation to flooding
Wieser, A.; Güntner, A.; Dietrich, P.; Handwerker, J.; Khordakova, D.; Ködel, U.; Kohler, M.; Mollenhauer, H.; Mühr, B.; Nixdorf, E.; Reich, M.; Rolf, C.; Schrön, M.; Schütze, C.; Weber, U.
2023. Environmental Earth Sciences, 82 (17), Art.-Nr.: 406. doi:10.1007/s12665-023-11050-7
Meteorological and air quality measurements in a city region with complex terrain: influence of meteorological phenomena on urban climate
Samad, A.; Kiseleva, O.; Holst, C. C.; Wegener, R.; Kossmann, M.; Meusel, G.; Fiehn, A.; Erbertseder, T.; Becker, R.; Roiger, A.; Stanislawsky, P.; Klemp, D.; Emeis, S.; Kalthoff, N.; Vogt, U.
2023. Meteorologische Zeitschrift, 32 (4), 293–315. doi:10.1127/metz/2023/1124
Understanding summer wind systems over the eastern Mediterranean in a high‐resolution climate simulation
Latt, M. R.; Hochman, A.; Caldas-Alvarez, A.; Helgert, S.; Pinto, J. G.; Corsmeier, U.
2022. International Journal of Climatology, 42 (15), 8112–8131. doi:10.1002/joc.7695
A meteorological dataset of the West African monsoon during the 2016 DACCIWA campaign
Kohler, M.; Bessardon, G.; Brooks, B.; Kalthoff, N.; Lohou, F.; Adler, B.; Olawale Jegede, O.; Altstädter, B.; Amekudzi, L. K.; Aryee, J. N. A.; Atiah, W. A.; Ayoola, M.; Babić, K.; Bärfuss, K.; Bezombes, Y.; Bret, G.; Brilouet, P.-E.; Cayle-Aethelhard, F.; Danuor, S.; Delon, C.; Derrien, S.; Dione, C.; Durand, P.; Fosu-Amankwah, K.; Gabella, O.; Groves, J.; Handwerker, J.; Jambert, C.; Kunka, N.; Lampert, A.; Leclercq, J.; Lothon, M.; Medina, P.; Miere, A.; Pätzold, F.; Pedruzo-Bagazgoitia, X.; Reinares Martínez, I.; Sharpe, S.; Smith, V.; Wieser, A.
2022. Scientific Data, 9 (1), Art.Nr.: 174. doi:10.1038/s41597-022-01277-7
A collaborative effort to better understand, measure and model atmospheric exchange processes over mountains
Rotach, M. W.; Serafin, S.; Ward, H. C.; Arpagaus, M.; Colfescu, I.; Cuxart, J.; De Wekker, S. F. J.; Grubišic, V.; Kalthoff, N.; Karl, T.; Kirshbaum, D. J.; Lehner, M.; Mobbs, S.; Paci, A.; Palazzi, E.; Bailey, A.; Schmidli, J.; Wittmann, C.; Wohlfahrt, G.; Zardi, D.
2022. Bulletin of the American Meteorological Society, 103 (5), E1282–E1295. doi:10.1175/BAMS-D-21-0232.1
MOSES: A Novel Observation System to Monitor Dynamic Events across Earth Compartments
Weber, U.; Attinger, S.; Baschek, B.; Boike, J.; Borchardt, D.; Brix, H.; Brüggemann, N.; Bussmann, I.; Dietrich, P.; Fischer, P.; Greinert, J.; Hajnsek, I.; Kamjunke, N.; Kerschke, D.; Kiendler-Scharr, A.; Körtzinger, A.; Kottmeier, C.; Merz, B.; Merz, R.; Riese, M.; Schloter, M.; Schmid, H.; Schnitzler, J.-P.; Sachs, T.; Schütze, C.; Tillmann, R.; Vereecken, H.; Wieser, A.; Teutsch, G.
2022. Bulletin of the American Meteorological Society, 103 (2), E339–E348. doi:10.1175/BAMS-D-20-0158.1
Swabian MOSES 2021: An interdisciplinary field campaign for investigating convective storms and their event chains
Kunz, M.; Abbas, S. S.; Bauckholt, M.; Böhmländer, A.; Feuerle, T.; Gasch, P.; Glaser, C.; Groß, J.; Hajnsek, I.; Handwerker, J.; Hase, F.; Khordakova, D.; Knippertz, P.; Kohler, M.; Lange, D.; Latt, M.; Laube, J.; Martin, L.; Mauder, M.; Möhler, O.; Mohr, S.; Reitter, R. W.; Rettenmeier, A.; Rolf, C.; Saathoff, H.; Schrön, M.; Schütze, C.; Spahr, S.; Späth, F.; Vogel, F.; Völksch, I.; Weber, U.; Wieser, A.; Wilhelm, J.; Zhang, H.; Dietrich, P.
2022. Frontiers in Earth Science, 10, Art.Nr. 999593. doi:10.3389/feart.2022.999593
Sensitivity of low-level clouds and precipitation to anthropogenic aerosol emission in southern West Africa: a DACCIWA case study
Deroubaix, A.; Menut, L.; Flamant, C.; Knippertz, P.; Fink, A. H.; Batenburg, A.; Brito, J.; Denjean, C.; Dione, C.; Dupuy, R.; Hahn, V.; Kalthoff, N.; Lohou, F.; Schwarzenboeck, A.; Siour, G.; Tuccella, P.; Voigt, C.
2022. Atmospheric Chemistry and Physics, 22 (5), 3251–3273. doi:10.5194/acp-22-3251-2022
A case study on the impact of severe convective storms on the water vapor mixing ratio in the lower mid-latitude stratosphere observed in 2019 over Europe
Khordakova, D.; Rolf, C.; Grooß, J.-U.; Müller, R.; Konopka, P.; Wieser, A.; Krämer, M.; Riese, M.
2022. Atmospheric Chemistry and Physics, 22 (2), 1059–1079. doi:10.5194/acp-22-1059-2022
Cross‐valley vortices in the Inn valley, Austria: Structure, evolution and governing force imbalances
Babić, N.; Adler, B.; Gohm, A.; Kalthoff, N.; Haid, M.; Lehner, M.; Ladstätter, P.; Rotach, M. W.
2021. Quarterly journal of the Royal Meteorological Society, 147 (740), 3835–3861. doi:10.1002/qj.4159
Examining relationships between entrainment-driven scalar dissimilarity and surface energy balance underclosure in a semiarid valley
Babić, N.; Stiperski, I.; Marinović, I.; Večenaj, Ž.; Wekker, S. F. J. D.
2021. Agricultural and forest meteorology, 298-299, Art. Nr.: 108272. doi:10.1016/j.agrformet.2020.108272
Nocturnal atmospheric conditions and their impact on air pollutant concentrations in the city of Stuttgart
Kiseleva, O.; Kalthoff, N.; Adler, B.; Kossmann, M.; Wieser, A.; Rinke, R.
2021. Meteorological applications, 28 (6), Article no: e2037. doi:10.1002/met.2037
Sensitivity of convective precipitation to model grid spacing and land‐surface resolution in ICON
Singh, S.; Kalthoff, N.; Gantner, L.
2021. Quarterly journal of the Royal Meteorological Society, 147 (738), 2709–2728. doi:10.1002/qj.4046
Mesoscale wind patterns over the complex urban terrain around Stuttgart investigated with dual-Doppler lidar profiles
Wittkamp, N.; Adler, B.; Kalthoff, N.; Kiseleva, O.
2021. Meteorologische Zeitschrift, 30 (2), 185–200. doi:10.1127/metz/2020/1029
Breakup of nocturnal low-level stratiform clouds during the southern West African monsoon season
Zouzoua, M.; Lohou, F.; Assamoi, P.; Lothon, M.; Yoboue, V.; Dione, C.; Kalthoff, N.; Adler, B.; Babić, K.; Pedruzo-Bagazgoitia, X.; Derrien, S.
2021. Atmospheric chemistry and physics, 21 (3), 2027–2051. doi:10.5194/acp-21-2027-2021
CROSSINN - a field experiment to study the three-dimensional flow structure in the Inn Valley, Austria
Adler, B.; Gohm, A.; Kalthoff, N.; Babić, N.; Corsmeier, U.; Lehner, M.; Rotach, M. W.; Haid, M.; Markmann, P.; Gast, E.; Tsaknakis, G.; Georgoussis, G.
2021. Bulletin of the American Meteorological Society, 102 (1), E38–E60. doi:10.1175/BAMS-D-19-0283.1
Spatio-temporal Structure of the Boundary Layer under the Impact of Mountain Waves
Kalthoff, N.; Adler, B.; Bischoff-Gauss, I.
2020. Meteorologische Zeitschrift, 29 (5), 409–424. doi:10.1127/metz/2020/1033
High-resolution fully-coupled atmospheric–hydrological modeling: a cross-compartment regional water and energy cycle evaluation
Fersch, B.; Senatore, A.; Adler, B.; Arnault, J.; Mauder, M.; Schneider, K.; Völksch, I.; Kunstmann, H.
2020. Hydrology and earth system sciences discussions, 24, 2457–2481. doi:10.5194/hess-2019-478
Detection of structures in the horizontal wind field over complex terrain using coplanar Doppler lidar scans
Adler, B.; Kalthoff, N.; Kiseleva, O.
2020. Meteorologische Zeitschrift, 29 (6), 467–481. doi:10.1127/metz/2020/1031
The vertical variability of black carbon observed in the atmospheric boundary layer during DACCIWA
Altstädter, B.; Deetz, K.; Vogel, B.; Babić, K.; Dione, C.; Pacifico, F.; Jambert, C.; Ebus, F.; Bärfuss, K.; Pätzold, F.; Lampert, A.; Adler, B.; Kalthoff, N.; Lohou, F.
2020. Atmospheric chemistry and physics, 20 (13), 7911–7928. doi:10.5194/acp-20-7911-2020
Observation of sensible and latent heat flux profiles with lidar
Behrendt, A.; Wulfmeyer, V.; Senff, C.; Muppa, S. K.; Späth, F.; Lange, D.; Kalthoff, N.; Wieser, A.
2020. Atmospheric measurement techniques, 13 (6), 3221–3233. doi:10.5194/amt-13-3221-2020
High-resolution fully coupled atmospheric-hydrological modeling: a cross-compartment regional water and energy cycle evaluation
Fersch, B.; Senatore, A.; Adler, B.; Arnault, J.; Mauder, M.; Schneider, K.; Völksch, I.; Kunstmann, H.
2020. Hydrology and earth system sciences, 24 (5), 2457–2481. doi:10.5194/hess-24-2457-2020
An LES-based airborne Doppler lidar simulator and its application to wind profiling in inhomogeneous flow conditions
Gasch, P.; Wieser, A.; Lundquist, J. K.; Kalthoff, N.
2020. Atmospheric measurement techniques, 13 (3), 1609–1631. doi:10.5194/amt-13-1609-2020
Warm Rain in Southern West Africa: A Case Study at Savè
Martínez, I. R.; Chaboureau, J.-P.; Handwerker, J.
2020. Atmosphere, 11 (3), Article no: 298. doi:10.3390/atmos11030298
Conceptual model of diurnal cycle of low-level stratiform clouds over southern West Africa
Lohou, F.; Kalthoff, N.; Adler, B.; Babić, K.; Dione, C.; Lothon, M.; Pedruzo-Bagazgoitia, X.; Zouzoua, M.
2020. Atmospheric chemistry and physics, 20 (4), 2263–2275. doi:10.5194/acp-20-2263-2020
The diurnal stratocumulus-to-cumulus transition over land in southern West Africa
Pedruzo-Bagazgoitia, X.; Roode, S. R. de; Adler, B.; Babić, K.; Dione, C.; Kalthoff, N.; Lohou, F.; Lothon, M.; Vilà-Guerau de Arellano, J.
2020. Atmospheric chemistry and physics, 20 (5), 2735–2754. doi:10.5194/acp-20-2735-2020
The Added Value of Large-Eddy and Storm-Resolving Models for Simulating Clouds and Precipitation
Stevens, B.; Acquistaoace, C.; Hansen, A.; Heinze, R.; Klinger, C.; Klocke, D.; Rybka, H.; Schubotz, W.; Windmiller, J.; Adamidis, P.; Arka, I.; Barlakas, V.; Biercamp, J.; Brueck, M.; Brune, S.; Buehler, S. A.; Burkhardt, U.; Cioni, G.; Costa-Suros, M.; Crewell, S.; Crüger, T.; Deneke, H.; Friedrichs, P.; Henken, C. C.; Hohenegger, C.; Jacob, M.; Jakub, F.; Kalthoff, N.; Köhler, M.; Laar, T. W. van; Li, P.; Löhnert, U.; Macke, A.; Madenach, N.; Mayer, B.; Nam, C.; Naumann, A. K.; Peters, K.; Poll, S.; Quaas, J.; Röber, N.; Rochetin, N.; Scheck, L.; Schemann, V.; Schnitt, S.; Seifert, A.; Senf, F.; Shapkalijevski, M.; Simmer, C.; Singh, S.; Sourdeval, O.; Spickermann, D.; Strandgren, J.; Tessiot, O.; Vercauteren, N.; Vial, J.; Voigt, A.; Zängl, G.
2020. Journal of the Meteorological Society of Japan, 98 (2), 395–435. doi:10.2151/jmsj.2020-021
Formation of Wind Gusts in an Extratropical Cyclone in the Light of Doppler Lidar Observations and Large-Eddy Simulations
Pantillon, F.; Adler, B.; Corsmeier, U.; Knippertz, P.; Wieser, A.; Hansen, A.
2020. Monthly weather review, (148), 353–375. doi:10.1175/MWR-D-19-0241.1
The Universal Cloud and Aerosol Sounding System (UCASS): a low-cost miniature optical particle counter for use in dropsonde or balloon-borne sounding systems
Smith, H. R.; Ulanowski, Z.; Kaye, P. H.; Hirst, E.; Stanley, W.; Kaye, R.; Wieser, A.; Stopford, C.; Kezoudi, M.; Girdwood, J.; Greenaway, R.; Mackenzie, R.
2019. Atmospheric measurement techniques, 12 (12), 6579–6599. doi:10.5194/amt-12-6579-2019
What controls the formation of nocturnal low-level stratus clouds over southern West Africa during the monsoon season?
Babić, K.; Kalthoff, N.; Adler, B.; Quinting, J. F.; Lohou, F.; Dione, C.; Lothon, M.
2019. Atmospheric chemistry and physics, 19 (21), 13489–13506. doi:10.5194/acp-19-13489-2019
Probing the fog life-cycles in the Namib desert
Spirig, R.; Vogt, R.; Larsen, J. A.; Feigenwinter, C.; Wicki, A.; Franceschi, J.; Parlow, E.; Adler, B.; Kalthoff, N.; Cermak, J.; Andersen, H.; Fuchs, J.; Bott, A.; Hacker, M.; Wagner, N.; Maggs-Kölling, G.; Wassenaar, T.; Seely, M.
2019. Bulletin of the American Meteorological Society, 100 (12), 2491–2507. doi:10.1175/BAMS-D-18-0142.1
Representation of atmospheric blocking in the new global non-hydrostatic weather prediction model ICON
Attinger, R.; Keller, J. H.; Köhler, M.; Riboldi, J.; Grams, C. M.
2019. Meteorologische Zeitschrift, 28 (5), 429–446. doi:10.1127/metz/2019/0967
Flow Separation in the Lee of a Crater Rim
Lehner, M.; Whiteman, C. D.; Hoch, S. W.; Adler, B.; Kalthoff, N.
2019. Boundary layer meteorology, 173 (2), 263–287. doi:10.1007/s10546-019-00466-z
Observations of thermally-driven winds in a small valley during the 21 August 2017 solar eclipse
Palomaki, R. T.; Babić, N.; Duine, G.-J.; Bossche, M. van den; De Wekker, S. F.
2019. Atmosphere, 10 (7), 389. doi:10.3390/atmos10070389
Low-level stratiform clouds and dynamical features observed within the southern West African monsoon
Dione, C.; Lohou, F.; Lothon, M.; Adler, B.; Babić, K.; Kalthoff, N.; Pedruzo-Bagazgoitia, X.; Bezombes, Y.; Gabella, O.
2019. Atmospheric chemistry and physics, 19 (13), 8979–8997. doi:10.5194/acp-19-8979-2019
The TRIple-frequency and Polarimetric radar Experiment for improving process observations of winter precipitation
Dias Neto, J.; Kneifel, S.; Ori, D.; Trömel, S.; Handwerker, J.; Bohn, B.; Hermes, N.; Mühlbauer, K.; Lenefer, M.; Simmer, C.
2019. Earth system science data, 11 (2), 845–863. doi:10.5194/essd-11-845-2019
Comparison of Convective Boundary-layer Characteristics from Aircraft and Wind Lidar Observations
Adler, B.; Kiseleva, O.; Kalthoff, N.; Wieser, A.
2019. Journal of atmospheric and oceanic technology, 36 (7), 1381–1399. doi:10.1175/JTECH-D-18-0118.1
The radiative impact of out-of-cloud aerosol hygroscopic growth during the summer monsoon in southern West Africa
Haslett, S. L.; Taylor, J. W.; Deetz, K.; Vogel, B.; Babić, K.; Kalthoff, N.; Wieser, A.; Dione, C.; Lohou, F.; Brito, J.; Dupuy, R.; Schwarzenboeck, A.; Zieger, P.; Coe, H.
2019. Atmospheric chemistry and physics, 19 (3), 1505–1520. doi:10.5194/acp-19-1505-2019
The observed diurnal cycle of low-level stratus clouds over southern West Africa: a case study
Babić, K.; Adler, B.; Kalthoff, N.; Andersen, H.; Dione, C.; Lohou, F.; Lothon, M.; Pedruzo-Bagazgoitia, X.
2019. Atmospheric chemistry and physics, 19 (2), 1281–1299. doi:10.5194/acp-19-1281-2019
Nocturnal low-level clouds in the atmospheric boundary layer over southern West Africa: an observation-based analysis of conditions and processes
Adler, B.; Babić, K.; Kalthoff, N.; Lohou, F.; Lothon, M.; Dione, C.; Pedruzo-Bagazgoitia, X.; Andersen, H.
2019. Atmospheric chemistry and physics, 19 (1), 663–681. doi:10.5194/acp-19-663-2019
Diurnal cycle of coastal anthropogenic pollutant transport over southern West Africa during the DACCIWA campaign
Deroubaix, A.; Menut, L.; Flamant, C.; Brito, J.; Denjean, C.; Dreiling, V.; Fink, A.; Jambert, C.; Kalthoff, N.; Knippertz, P.; Ladkin, R.; Mailler, S.; Maranan, M.; Pacifico, F.; Piguet, B.; Siour, G.; Turquety, S.
2019. Atmospheric chemistry and physics, 19 (1), 473–497. doi:10.5194/acp-19-473-2019
The Nocturnal Evolution of Atmospheric Structure in a Basin as a Larger-Scale Katabatic Flow Is Lifted over Its Rim
Whiteman, C. D.; Lehner, M.; Hoch, S. W.; Adler, B.; Kalthoff, N.; Vogt, R.; Feigenwinter, I.; Haiden, T.; Hills, M. O. G.
2018. Journal of applied meteorology and climatology, 57 (4), 969–989. doi:10.1175/JAMC-D-17-0156.1
Exchange Processes in the Atmospheric Boundary Layer Over Mountainous Terrain
Serafin, S.; Adler, B.; Cuxart, J.; De Wekker, S.; Gohm, A.; Grisogono, B.; Kalthoff, N.; Kirshbaum, D.; Rotach, M.; Schmidli, J.; Stiperski, I.; Večenaj, Ž.; Zardi, D.
2018. Atmosphere, 9 (3), 102. doi:10.3390/atmos9030102
Moist Orographic Convection: Physical Mechanisms and Links to Surface-Exchange Processes
Kirshbaum, D.; Adler, B.; Kalthoff, N.; Barthlott, C.; Serafin, S.
2018. Atmosphere, 9 (3), 80. doi:10.3390/atmos9030080
High-Resolution Observations of Transport and Exchange Processes in Mountainous Terrain
Emeis, S.; Kalthoff, N.; Adler, B.; Pardyjak, E.; Paci, A.; Junkermann, W.
2018. Atmosphere, 9 (12), Article: 475. doi:10.3390/atmos9120457
A new far-field low-frequency electromagnetic method for measurement of temporal variations in subsurface electrical conductivity averaged over a transect
Kiseleva, O.; Brandelik, A.; Hübner, C.; Kalthoff, N.; Kohler, M.; Königer, F.; Kottmeier, C.
2018. Near surface geophysics, 16 (5), 573–590. doi:10.1002/nsg.12009
Numerical simulations of aerosol radiative effects and their impact on clouds and atmospheric dynamics over southern West Africa
Deetz, K.; Vogel, H.; Knippertz, P.; Adler, B.; Taylor, J.; Coe, H.; Bower, K.; Haslett, S.; Flynn, M.; Dorsey, J.; Crawford, I.; Kottmeier, C.; Vogel, B.
2018. Atmospheric chemistry and physics, 18 (13), 9767–9788. doi:10.5194/acp-18-9767-2018
Overview and first results of the Wind and Storms Experiment (WASTEX): a field campaign to observe the formation of gusts using a Doppler lidar
Pantillon, F.; Wieser, A.; Adler, B.; Corsmeier, U.; Knippertz, P.
2018. Advances in science and research, 15, 91–97. doi:10.5194/asr-15-91-2018
An overview of the diurnal cycle of the atmospheric boundary layer during the West African monsoon season: Results from the 2016 observational campaign
Kalthoff, N.; Lohou, F.; Brooks, B.; Jegede, G.; Adler, B.; Babić, K.; Dione, C.; Ajao, A.; Amekudzi, L. K.; Aryee, J. N. A.; Ayoola, M.; Bessardon, G.; Danuor, S. K.; Handwerker, J.; Kohler, M.; Lothon, M.; Pedruzo-Bagazgoitia, X.; Smith, V.; Sunmonu, L.; Wieser, A.; Fink, A. H.; Knippertz, P.
2018. Atmospheric chemistry and physics, 18, 2913–2928. doi:10.5194/acp-18-2913-2018
Katabatically driven cold air intrusions into a basin atmosphere
Whiteman, C. D.; Lehner, M.; Hoch, S. W.; Adler, B.; Kalthoff, N.; Haiden, T.
2018. Journal of applied meteorology and climatology, 57, 435–455. doi:10.1175/JAMC-D-17-0131.1
The Severe Hailstorm in SW Germany on 28 July 2013 : Characteristics, Impacts, and Meteorological Conditions
Kunz, M.; Blahak, U.; Handwerker, J.; Schmidberger, M.; Punge, H. J.; Mohr, S.; Fluck, E.; Bedka, K. M.
2018. Quarterly journal of the Royal Meteorological Society, 144 (710), 231–250. doi:10.1002/qj.3197
The Dynamics-Aerosol-Chemistry-Cloud Interactions in West Africa field campaign : Overview and research highlights
Flamant, C.; Knippertz, P.; Fink, A. H.; Akpo, A.; Brooks, B.; Chiu, C. J.; Coe, H.; Danuor, S.; Evans, M.; Jegede, O.; Kalthoff, N.; Konaré, A.; Liousse, C.; Lohou, F.; Mari, C.; Schlager, H.; Schwarzenboeck, A.; Adler, B.; Amekudzi, L.; Aryee, J.; Ayoola, M.; Batenburg, A. M.; Bessardon, G.; Borrmann, S.; Brito, J.; Bower, K.; Burnet, F.; Catoire, V.; Colomb, A.; Denjean, C.; Fosu-Amankwah, K.; Hill, P. G.; Lee, J.; Lothon, M.; Maranan, M.; Marsham, J.; Meynadier, R.; Ngamini, J.-B.; Rosenberg, P.; Sauer, D.; Smith, V.; Stratmann, G.; Taylor, J. W.; Voigt, C.; Yoboué, V.
2018. Bulletin of the American Meteorological Society, 99, 83–104. doi:10.1175/BAMS-D-16-0256.1
Trends in temperature and wind speed from 40 years of observations at a 200-m high meteorological tower in Southwest Germany
Kohler, M.; Metzger, J.; Kalthoff, N.
2018. International journal of climatology, 38 (1), 23–34. doi:10.1002/joc.5157
The ScaleX campaign: scale-crossing land-surface and boundary layer processes in the TERENO-preAlpine observatory
Wolf, B.; Chwala, C.; Fersch, B.; Garvelmann, J.; Junkermann, W.; Zeeman, M. J.; Angerer, A.; Adler, B.; Beck, C.; Brosy, C.; Brugger, P.; Emeis, S.; Dannenmann, M.; De Roo, F.; Diaz-Pines, E.; Haas, E.; agen, M.; Hajnsek, I.; Jacobeit, J.; Jagdhuber, T.; Kalthoff, N.; Kiese, R.; Kunstmann, H.; Kosak, O.; Krieg, R.; Malchow, C.; Mauder, M.; Merz, R.; Notarnicola, C.; Philipp, A.; Reif, W.; Reineke, S.; Rödiger, S.; Ruehr, N.; Schäfer, K.; Schrön, M.; Senatore, A.; Shupe, H.; Völksch, I.; Wanninger, C.; Zacharias, S.; Schmid, H. P.
2017. Bulletin of the American Meteorological Society, 98 (6), 1217–1234. doi:10.1175/BAMS-D-15-00277.1
Revealing the meteorological drivers of the September 2015 severe dust event in the Eastern Mediterranean
Gasch, P.; Rieger, D.; Walter, C.; Khain, P.; Levi, Y.; Knippertz, P.; Vogel, B.
2017. Atmospheric chemistry and physics, 17 (22), 13573–13604. doi:10.5194/acp-17-13573-2017
Impact of the 4 April 2014 Saharan dust outbreak on the photovoltaic power generation in Germany
Rieger, D.; Steiner, A.; Bachmann, V.; Gasch, P.; Förstner, J.; Deetz, K.; Vogel, B.; Vogel, H.
2017. Atmospheric chemistry and physics, 17 (21), 13391–13415. doi:10.5194/acp-17-13391-2017
The Impact of Land-Surface Parameter Properties and Resolution on the Simulated Cloud-Topped Atmospheric Boundary Layer
Gantner, L.; Maurer, V.; Kalthoff, N.; Kiseleva, O.
2017. Boundary layer meteorology, 165 (3), 475–496. doi:10.1007/s10546-017-0286-6
The stable isotopic composition of water vapour above Corsica during the HyMeX SOP1 campaign: insight into vertical mixing processes from lower-tropospheric survey flights
Sodemann, H.; Aemisegger, F.; Pfahl, S.; Bitter, M.; Corsmeier, U.; Feuerle, T.; Graf, P.; Hankers, R.; Hsiao, G.; Schulz, H.; Wieser, A.; Wernli, H.
2017. Atmospheric chemistry and physics, 17 (9), 6125–6151. doi:10.5194/acp-17-6125-2017
The HD(CP)² Observational Prototype Experiment (HOPE) – an overview
Macke, A.; Seifert, P.; Baars, H.; Barthlott, C.; Beekmans, C.; Behrendt, A.; Bohn, B.; Brueck, M.; Bühl, J.; Crewell, S.; Damian, T.; Deneke, H.; Düsing, S.; Foth, A.; Di Girolamo, P.; Hammann, E.; Heinze, R.; Hirsikko, A.; Kalisch, J.; Kalthoff, N.; Kinne, S.; Kohler, M.; Löhnert, U.; Madhavan, B. L.; Maurer, V.; Muppa, S. K.; Schween, J.; Serikov, I.; Siebert, H.; Simmer, C.; Späth, F.; Steinke, S.; Träumner, K.; Trömel, S.; Wehner, B.; Wieser, A.; Wulfmeyer, V.; Xie, X.
2017. Atmospheric chemistry and physics, 17 (7), 4887–4914. doi:10.5194/acp-17-4887-2017
Large-eddy simulations over Germany using ICON: a comprehensive evaluation
Heinze, R.; Dipankar, A.; Henken, C. C.; Moseley, C.; Sourdeval, O.; Trömel, S.; Xie, X.; Adamidis, P.; Ament, F.; Baars, H.; Barthlott, C.; Behrendt, A.; Blahak, U.; Bley, S.; Brdar, S.; Brueck, M.; Crewell, S.; Deneke, H.; Di Girolamo, P.; Evaristo, R.; Fischer, J.; Frank, C.; Friederichs, P.; Göcke, T.; Gorges, K.; Hande, L.; Hanke, M.; Hansen, A.; Hege, H.-C.; Hoose, C.; Jahns, T.; Kalthoff, N.; Klocke, D.; Kneifel, S.; Knippertz, P.; Kuhn, A.; Laar, T. van; Macke, A.; Maurer, V.; Mayer, B.; Meyer, C. I.; Muppa, S. K.; Neggers, R. A. J.; Orlandi, E.; Pantillon, F.; Pospichal, B.; Röber, N.; Scheck, L.; Seifert, A.; Seifert, P.; Senf, F.; Siligam, P.; Simmer, C.; Steinke, S.; Stevens, B.; Wapler, K.; Weniger, M.; Wulfmeyer, V.; Zängl, G.; Zhang, D.; Quaas, J.
2017. Quarterly journal of the Royal Meteorological Society, 143 (702), 69–100. doi:10.1002/qj.2947
Nocturnal low-level clouds over southern West Africa analysed using high-resolution simulations
Adler, B.; Kalthoff, N.; Gantner, L.
2017. Atmospheric chemistry and physics, 17 (2), 899–910. doi:10.5194/acp-17-899-2017
Initiation of deep convection in the Sahel in a convection-permitting climate simulation for northern Africa
Maurer, V.; Bischoff-Gauß, I.; Kalthoff, N.; Gantner, L.; Roca, R.; Panitz, H.-J.
2017. Quarterly journal of the Royal Meteorological Society, 143 (703), 806–816. doi:10.1002/qj.2966
The role of Corsica in initiating nocturnal offshore convection
Barthlott, C.; Adler, B.; Kalthoff, N.; Handwerker, J.; Kohler, M.; Wieser, A.
2016. Quarterly journal of the Royal Meteorological Society, 142 (S1), 222–237. doi:10.1002/qj.2415
Diagnostic study of a high-precipitation event in the Western Mediterranean: adequacy of current operational networks
Khodayar, S.; Raff, F.; Kalthoff, N.; Bock, O.
2016. Quarterly journal of the Royal Meteorological Society, 142 (S1), 72–85. doi:10.1002/qj.2600
Introduction to the HyMeX Special Issue on ‘Advances in understanding and forecasting of heavy precipitation in the Mediterranean through the HyMeX SOP1 field campaign’
Ducrocq, V.; Davolio, S.; Ferretti, R.; Flamant, C.; Homar-Santaner, V.; Kalthoff, N.; Richard, E.; Wernli, H.
2016. Quarterly journal of the Royal Meteorological Society, 142 (S1), 1–6. doi:10.1002/qj.2856
The variability of water vapour and pre-convective conditions over the mountainous island of Corsica
Adler, B.; Kalthoff, N.; Kohler, M.; Handwerker, J.; Wieser, A.; Corsmeier, U.; Kottmeier, C.; Lambert, D.; Bock, O.
2016. Quarterly journal of the Royal Meteorological Society, 142 (S1), 335–346. doi:10.1002/qj.2545
Precipitation and microphysical processes observed by three polarimetric X-band radars and ground-based instrumentation during HOPE
Xie, X.; Evaristo, R.; Simmer, C.; Handwerker, J.; Trömel, S.
2016. Atmospheric chemistry and physics, 16 (11), 7105–7116. doi:10.5194/acp-16-7105-2016
THE METCRAX II Field Experiment - A Study of Downslope Windstorm-Type Flows in Arizona’s Meteor Crater
Lehner, M.; Whiteman, C. D.; Hoch, S. W.; Crosman, E. T.; Jeglum, M. E.; Cherukuru, N. W.; Calhoun, R.; Adler, B.; Kalthoff, N.; Rotunno, R.; Horst, T. W.; Semmer, S.; Brown, W. O. J.; Oncley, S. P.; Vogt, R.; Grudzielanek, A. M.; Cermak, J.; Fonteyne, N. J.; Bernhofer, C.; Pitacco, A.; Klein, P.
2016. Bulletin of the American Meteorological Society, 97 (2), 217–235. doi:10.1175/BAMS-D-14-00238.1
New perspectives on interdisciplinary earth science at the Dead Sea: The DESERVE project
Kottmeier, C.; Agnon, A.; Al-Halbouni, D.; Alpert, P.; Corsmeier, U.; Dahm, T.; Eshel, A.; Geyer, S.; Haas, M.; Holohan, E.; Kalthoff, N.; Kishcha, P.; Krawczyk, C.; Lati, J.; Laronne, J. B.; Lott, F.; Mallast, U.; Merz, R.; Metzger, J.; Mohsen, A.; Morin, E.; Nied, M.; Rödiger, T.; Salameh, E.; Sawarieh, A.; Shannak, B.; Siebert, C.; Weber, M.
2016. Science of the Total Environment, 544, 1045–1058. doi:10.1016/j.scitotenv.2015.12.003
Observed spatiotemporal variability of boundary-layer turbulence over flat, heterogeneous terrain
Maurer, V.; Kalthoff, N.; Wieser, A.; Kohler, M.; Mauder, M.; Gantner, L.
2016. Atmospheric Chemistry and Physics, 16 (3), 1377–1400. doi:10.5194/acp-16-1377-2016
The DACCIWA Project: Dynamics–Aerosol–Chemistry–Cloud Interactions in West Africa
Knippertz, P.; Coe, H.; Chiu, J. C.; Evans, M. J.; Fink, A. H.; Kalthoff, N.; Liousse, C.; Mari, C.; Allan, R. P.; Brooks, B.; Danour, S.; Flamant, C.; Jegede, O. O.; Lohou, F.; Marsham, J. H.
2015. Bulletin of the American Meteorological Society, 96, 1451–1460. doi:10.1175/BAMS-D-14-00108.1
Observed spatial variability of boundary-layer turbulence over flat, heterogeneous terrain
Maurer, V.; Kalthoff, N.; Wieser, A.; Kohler, M.; Mauder, M.
2015. Atmospheric Chemistry and Physics Discussions, 15 (13), 18011–18064. doi:10.5194/acpd-15-18011-2015
Turbulent structures and coherence in the atmospheric surface layer
Träumner, K.; Damian, T.; Stawiarski, C.; Wieser, A.
2015. Boundary layer meteorology, 154, 1–25. doi:10.1007/s10546-014-9967-6
Nocturnal Low-level Jet Evolution in a Broad Valley Observed by Dual Doppler Lidar
Damian, T.; Wieser, A.; Träumner, K.; Corsmeier, U.; Kottmeier, C.
2014. Meteorologische Zeitschrift, 23 (3), 305–313. doi:10.1127/0941-2948/2014/0543
HYMEX-SOPI. The field campaign dedicated to heavy precipitation and flash flooding in ther northwestern Mediterranean
Ducrocq, V.; Braud, I.; Davolio, S.; Ferretti, R.; Flamant, C.; Jansa, A.; Kalthoff, N.; Richard, E.; Taupier-Letage, I.; Ayral, P. A.; Belamari, S.; Berne, A.; Borga, M.; Boudevillain, B.; Bock, O.; Boichard, J. L.; Bouin, M. N.; Bousquet, O.; Bouvier, C.; Chiggiato, J.; Cimini, D.; Corsmeier, U.; Coppola, L.; Cocquerez, P.; Defer, E.; Delanoe, J.; Girolamo, P. di; Doerenbecher, A.; Drobinski, P.; Dufournet, Y.; Fourrie, N.; Gourley, J. J.; Labatut, L.; Lambert, D.; Le Coz, J.; Marzano, F. S.; Molinie, G.; Montani, A.; Nord, G.; Nuret, M.; Ramage, K.; Rison, W.; Roussot, O.; Said, F.; Schwarzenboeck, A.; Testor, P.; Baelen, J. van; Vincedon, B.; Aran, M.; Tamayo, J.
2014. Bulletin of the American Meteorological Society, 95, 1083–1100. doi:10.1175/BAMS-D-12-00244.1
Spatial variability of particle number concentrations and NOₓ in the Karlsruhe (Germany) area obtained with the mobile laboratory ’AERO-TRAM’
Hagemann, R.; Corsmeier, U.; Kottmeier, C.; Rinke, R.; Wieser, A.; Vogel, B.
2014. Atmospheric environment, 94, 341–352. doi:10.1016/j.atmosenv.2014.05.051
Impact of upstream flow conditions on the initiation of moist convection over the island or Corsica
Metzger, J.; Barthlott, C.; Kalthoff, N.
2014. Atmospheric research, 145-146, 279–296. doi:10.1016/j.atmosres.2014.04.011
Evaluation of wind energy potential over Thailand by using an atmospheric mesoscale model and a GIS approach
Janjai, S.; Masiri, I.; Promsen, W.; Pattarapanitchai, S.; Pankaew, P.; Laksanaboonsong, J.; Bischoff-Gauss, I.; Kalthoff, N.
2014. Journal of wind engineering and industrial aerodynamics, 129, 1–10. doi:10.1016/j.jweia.2014.03.010