Peer-Reviewed Publications:
Bauer, H.-S., T. Schwitalla, O. Branch, and R. Thundathil, 2023: WRF simulations to investigate processes across scales (WRFSCALE). In: Nagel, W.E., Kroener, D.H., Resch, M.M. (eds) High Performance Computing in Science and Engineering '21. HPCSE 2021. Springer, Cham.
DOI:10.1007/978-3-031-17937-2_25
Bauer, H.-S., F. Spaeth, D. Lange, R. Thundathil, J. Ingwersen, A. Behrendt, and V. Wulfmeyer, 2023: Evolution of the Convective Boundary Layer in a WRF Simulation Nested Down to 100 m Resolution During a Cloud-Free Case of LAFE, 2017 and Comparison to Observations J. Geophys. Res. Atmos., 128(8), e2022JD037212.
DOI:10.1029/2022JD037212
Belušić Vozila, A., D. Belušić, M. Telišman Prtenjak, I. Guettler, S. Bastin, E. Brisson, M.-E. Demory, A. Dobler, H. Feldmann, Ø. Hodnebrog, S. Kartsios, K. Keuler, T. Lorenz, J. Milovac, E. Pichelli, M. Raffa, P. M. M. Soares, M. H. Toelle, H. Truhetz, H. de Vries, and K. Warrach-Sagi, 2023: Evaluation of the near-surface wind field over the Adriatic region. Local wind characteristics in the convection-permitting model ensemble. Clim. Dynam.
DOI:10.1007/s00382-023-06703-z
Breil M., F. Krawczyk, and J. G. Pinto, 2023: The response of the regional longwave radiation balance and climate system in Europe to an idealized afforestation experiment. Earth Syst. Dynam. 14(1), 243-253.
DOI:10.5194/esd-14-243-2023
Breil, M., V. Schneider, and J. G. Pinto, 2023: The effect of forest cover changes on the regional climate conditions in Europe during the period 1986-2015, Biogeosciences Discuss. [preprint], in review.
DOI:10.5194/bg-2023-94
Breil, M., A. Weber, and J. G. Pinto, 2023. The potential of an increased deciduous forest fraction to mitigate the effects of heat extremes in Europe. Biogeosciences, 20(12), 2237-2250.
DOI:10.5194/bg-20-2237-2023
Ferdini, S., M. von Cossel, V. Wulfmeyer, and K. Warrach-Sagi, 2023: Climate-based identification of suitable cropping areas for giant reed and reed canary grass on marginal land in Central and Southern Europe under climate change. Glob. change biol. / Bioenergy, 15(4), 424-443.
DOI:10.1111/gcbb.13033
Lange D., A. Behrendt, C. Senff, F. Spaeth, and V. Wulfmeyer, 2023: The Water-Vapor Budget in the Convective Boundary Layer: A Case Study using Water-Vapor Raman Lidar and Doppler Lidar During LAFE. J. Atmos. Ocean. Tech., submitted, JTECH-D-23-0075.
Rousi, E., A. H. Fink, L. S. Andersen, F. N. Becker, G. Beobide-Arsuaga, M. Breil, G. Cozzi, J. Heinke, L. Jach, D. Niermann, D. Petrovic, A. Richling, J. Riebold, S. Steidl, L. Suarez-Gutierrez, J. Tradowsky, D. Coumou, A. Duesterhus, F. Ellsaeßer, G. Fragkoulidis, D. Gliksman, D. Handorf, K. Haustein, K. Kornhuber, H. Kunstmann, J. G. Pinto, K. Warrach-Sagi, and E. Xoplaki, 2023: The extremely hot and dry 2018 summer in central and northern Europe from a multi-faceted weather and climate perspective. Nat. Hazard Earth Sys. 23(5), 1699-1718.
DOI:10.5194/nhess-23-1699-2023
Spaeth, F., V. Rajtschan, T. K. D. Weber, S. Morandage, D. Lange, S. S. Abbas, A. Behrendt, J. Ingwersen, T. Streck, and V. Wulfmeyer, 2023: The land-atmosphere feedback observatory: a new observational approach for characterizing land-atmosphere feedback, Geosci. Instrum. Method. Data Syst. 12, 25-44.
DOI:10.5194/gi-12-25-2023
Wulfmeyer, V., J. M. V. Pineda, S. Otte, M. Karlbauer, M. V. Butz, T. R. Lee, and V. Rajtschan, 2023: Estimation of the Surface Fluxes for Heat and Momentum in Unstable Conditions with Machine Learning and Similarity Approaches for the LAFE Data Set. Bound-Lay. Meteorol., 186, 337-371.
DOI:10.1007/s10546-022-00761-2
Pichugina, Y. L., Banta, R. M., Brewer, W. A., Turner, D. D., Wulfmeyer, V. O., Strobach, E. J., Baidar, S. Carroll, B. J., 2023: Doppler Lidar Measurements of Wind Variability and LLJ Properties in Central Oklahoma during the August 2017 Land-Atmosphere Feedback Experiment. Journal of Applied Meteorology and Climatology, 62(8), pp. 947-969.
DOI:10.1175/JAMC-D-22-0128.1
Contributions to Conferences:
Abbas, S., A. Behrendt, F. Spaeth, D. Lange, O. Alnayef, and V. Wulfmeyer, 2023: Study of the Atmospheric Boundary Layer and Land-Atmosphere Interaction with Lidars, EGU General Assembly 2023, Vienna, Austria, 24-28 Apr 2023, EGU23-15942.
DOI:10.5194/egusphere-egu23-15942
Alnayef, O., A. Behrendt, D. Lange, F. Spaeth, V. Wulfmeyer, and S. Abbas, 2023: Investigation of Boundary Layer Aerosol Processes with Turbulence-Resolving Lidar, EGU General Assembly 2023, Vienna, Austria, 24-28 Apr 2023, EGU23-16192.
DOI:10.5194/egusphere-egu23-16192
Bauer, H.-S., F. Spaeth, A. Behrendt, V. Wulfmeyer, and D. Lange, 2023: The Evolution of the Convective Boundary Layer in the Southern Great Plains during the Land-Atmosphere-Feedback Experiment (LAFE): Comparison of WRF in a Nested Mesoscale to Turbulence-Permitting Configuration with 3D Observations on 23 August 2017. 103rd AMS Annual Meeting, 24th Symposium on Boundary Layers and Turbulence, January 8-12, Denver Colorado, USA.
Behrendt, A., D. Lange, and V. Wulfmeyer, 2023: How good are temperature and humidity measurements with lidar? EGU General Assembly 2023, Vienna, Austria, 24-28 Apr 2023, EGU23-15605.
DOI:10.5194/egusphere-egu23-15605
Flamant, C. and the WaLiNeAs Team, 2023: A network of water vapor Raman lidars for improving heavy precipitation forecasting in southern France: introducing the WaLiNeAs initiative and first highlights from the 2022 field campaign, EGU General Assembly 2023, Vienna, Austria, 23-28 Apr 2023, EGU23-14747.
DOI:10.5194/egusphere-egu23-14747
Lange, D., A. Behrendt, and V. Wulfmeyer, 2023: The atmospheric raman temperature and humidity sounder: highlights of four years of automated measurements of the atmospheric boundary layer and free troposphere, EGU General Assembly 2023, Vienna, Austria, 24-28 Apr 2023, EGU23-10606.
DOI:10.5194/egusphere-egu23-10606
Schumacher, M., A. Behrendt, D. Lange, and V. Wulfmeyer, 2023:  Development of a Carbon Dioxide Raman Lidar, EGU General Assembly 2023, Vienna, Austria, 23-28 April 2023, EGU23-13823.
DOI:10.5194/egusphere-egu23-13823