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Gruppiert nach: Dokumententyp | Veröffentlichungsdatum
Anzahl der Publikationen: 29

Zeitschriftenartikel

Puh, Matjaž ORCID logoORCID: https://orcid.org/0000-0002-0954-8940; Keil, Christian ORCID logoORCID: https://orcid.org/0000-0003-2736-4309; Gebhardt, Christoph; Marsigli, Chiara ORCID logoORCID: https://orcid.org/0000-0003-3376-1896; Hirt, Mirjam ORCID logoORCID: https://orcid.org/0000-0002-5650-7594; Jakub, Fabian und Craig, George C. ORCID logoORCID: https://orcid.org/0000-0002-7431-8164 (2023): Physically based stochastic perturbations improve a high‐resolution forecast of convection. In: Quarterly Journal of the Royal Meteorological Society, Bd. 149, Nr. 757: S. 3582-3592 [PDF, 4MB]

Hirt, Mirjam ORCID logoORCID: https://orcid.org/0000-0002-5650-7594; Craig, George C. ORCID logoORCID: https://orcid.org/0000-0002-7431-8164 und Klein, Rupert (2023): Scale interactions between the meso‐ and synoptic scales and the impact of diabatic heating. In: Quarterly Journal of the Royal Meteorological Society, Bd. 149, Nr. 753: S. 1319-1334 [PDF, 3MB]

Krueger, Konstantin; Schaefler, Andreas; Wirth, Martin; Weissmann, Martin und Craig, George C. (2022): Vertical structure of the lower-stratospheric moist bias in the ERA5 reanalysis and its connection to mixing processes. In: Atmospheric Chemistry and Physics, Bd. 22, Nr. 23: S. 15559-15577

Selz, Tobias; Riemer, Michael und Craig, George C. (2022): The Transition from Practical to Intrinsic Predictability of Midlatitude Weather. In: Journal of the Atmospheric Sciences, Bd. 79, Nr. 8: S. 2013-2030

Tempest, Kirsten I.; Craig, George C. und Brehmer, Jonas R. (2022): Convergence of forecast distributions in a 100,000-member idealised convective-scale ensemble. In: Quarterly Journal of the Royal Meteorological Society, Bd. 149, Nr. 752: S. 677-702 [PDF, 6MB]

Craig, George C.; Puh, Matjaz; Keil, Christian; Tempest, Kirsten; Necker, Tobias; Ruiz, Juan; Weissmann, Martin und Miyoshi, Takemasa (2022): Distributions and convergence of forecast variables in a 1,000-member convection-permitting ensemble. In: Quarterly Journal of the Royal Meteorological Society, Bd. 148, Nr. 746: S. 2325-2343 [PDF, 12MB]

Wang, Yong; Zhang, Guang J.; Xie, Shaocheng; Lin, Wuyin; Craig, George C.; Tang, Qi und Ma, Hsi-Yen (2021): Effects of coupling a stochastic convective parameterization with the Zhang-McFarlane scheme on precipitation simulation in the DOE E3SMv1.0 atmosphere model. In: Geoscientific Model Development, Bd. 14, Nr. 3: S. 1575-1593

Hirt, Mirjam und Craig, George C. (2021): A cold pool perturbation scheme to improve convective initiation in convection-permitting models. In: Quarterly Journal of the Royal Meteorological Society, Bd. 147, Nr. 737: S. 2429-2447

Grazzini, Federico; Fragkoulidis, Georgios; Teubler, Franziska; Wirth, Volkmar und Craig, George C. (2021): Extreme precipitation events over northern Italy. Part II: Dynamical precursors. In: Quarterly Journal of the Royal Meteorological Society, Bd. 147, Nr. 735: S. 1237-1257

Craig, George C.; Fink, Andreas H.; Hoose, Corinna; Janjic, Tijana; Knippertz, Peter; Laurian, Audine; Lerch, Sebastian; Mayer, Bernhard; Miltenberger, Annette; Redl, Robert; Riemer, Michael; Tempest, Kirsten und Wirth, Volkmar (2021): Waves to Weather Exploring the Limits of Predictability of Weather. In: Bulletin of the American Meteorological Society, Bd. 102, Nr. 11, E2151-E2164

Grazzini, Federico; Craig, George C.; Keil, Christian; Antolini, Gabriele und Pavan, Valentina (2020): Extreme precipitation events over northern Italy. Part I: A systematic classification with machine‐learning techniques. In: Quarterly Journal of the Royal Meteorological Society, Bd. 146, Nr. 726: S. 69-85 [PDF, 14MB]

Hirt, Mirjam; Craig, George C.; Schäfer, Sophia A. K.; Savre, Julien und Heinze, Rieke (2020): Cold‐pool‐driven convective initiation: using causal graph analysis to determine what convection‐permitting models are missing. In: Quarterly Journal of the Royal Meteorological Society, Bd. 146, Nr. 730: S. 2205-2227 [PDF, 9MB]

Zeng, Yuefei; Janjic, Tijana; de Lozar, Alberto; Rasp, Stephan; Blahak, Ulrich; Seifert, Axel und Craig, George C. (2020): Comparison of Methods Accounting for Subgrid-Scale Model Error in Convective-Scale Data Assimilation. In: Monthly Weather Review, Bd. 148, Nr. 6: S. 2457-2477

Bachmann, Kevin; Keil, Christian; Craig, George C.; Weissmann, Martin und Welzbacher, Christian A. (2020): Predictability of Deep Convection in Idealized and Operational Forecasts: Effects of Radar Data Assimilation, Orography, and Synoptic Weather Regime. In: Monthly Weather Review, Bd. 148, Nr. 1: S. 63-81

Baumgart, Marlene; Ghinassi, Paolo; Wirth, Volkmar; Selz, Tobias; Craig, George C. und Riemer, Michael (2019): Quantitative View on the Processes Governing the Upscale Error Growth up to the Planetary Scale Using a Stochastic Convection Scheme. In: Monthly Weather Review, Bd. 147, Nr. 5: S. 1713-1731

Windmiller, Julia M. und Craig, George C. (2019): Universality in the Spatial Evolution of Self-Aggregation of Tropical Convection. In: Journal of the Atmospheric Sciences, Bd. 76, Nr. 6: S. 1677-1696

Selz, Tobias; Bierdel, Lotte und Craig, George C. (2019): Estimation of the Variability of Mesoscale Energy Spectra with Three Years of COSMO-DE Analyses. In: Journal of the Atmospheric Sciences, Bd. 76, Nr. 2: S. 627-637

Hirt, Mirjam; Rasp, Stephan; Blahak, Ulrich und Craig, George C. (2019): Stochastic Parameterization of Processes Leading to Convective Initiation in Kilometer-Scale Models. In: Monthly Weather Review, Bd. 147, Nr. 11: S. 3917-3934

Rasp, Stephan; Selz, Tobias und Craig, George C. (2018): Variability and Clustering of Midlatitude Summertime Convection: Testing the Craig and Cohen Theory in a Convection-Permitting Ensemble with Stochastic Boundary Layer Perturbations. In: Journal of the Atmospheric Sciences, Bd. 75, Nr. 2: S. 691-706

Baur, Florian; Keil, Christian und Craig, George C. (2018): Soil moisture-precipitation coupling over Central Europe: Interactions between surface anomalies at different scales and the dynamical implication. In: Quarterly Journal of the Royal Meteorological Society, Bd. 144, Nr. 717: S. 2863-2875

Flack, David L. A.; Gray, Suzanne L.; Plant, Robert S.; Lean, Humphrey W. und Craig, George C. (2018): Convective-Scale Perturbation Growth across the Spectrum of Convective Regimes. In: Monthly Weather Review, Bd. 146, Nr. 1: S. 387-405

Selz, Tobias; Fischer, Lucas und Craig, George C. (2017): Structure Function Analysis of Water Vapor Simulated with a Convection-Permitting Model and Comparison to Airborne Lidar Observations. In: Journal of the Atmospheric Sciences, Bd. 74, Nr. 4: S. 1201-1210

Flack, David L. A.; Plant, Robert S.; Gray, Suzanne L.; Lean, Humphrey W.; Keil, Christian und Craig, George C. (2016): Characterisation of convective regimes over the British Isles. In: Quarterly Journal of the Royal Meteorological Society, Bd. 142, Nr. 696: S. 1541-1553

Haslehner, Mylène; Janjić, Tijana und Craig, George C. (2016): Testing particle filters on simple convective-scale models. Part2: Amodified shallow-water model. In: Quarterly Journal of the Royal Meteorological Society, Bd. 142, Nr. 697: S. 1628-1646

Haslehner, Mylène; Janjić, Tijana und Craig, George C. (2016): Testing particle filters on simple convective-scale models Part l: A stochastic cloud model. In: Quarterly Journal of the Royal Meteorological Society, Bd. 142, Nr. 696: S. 1439-1452

Rasp, Stephan; Selz, Tobias und Craig, George C. (2016): Convective and Slantwise Trajectory Ascent in Convection-Permitting Simulations of Midlatitude Cyclones. In: Monthly Weather Review, Bd. 144, Nr. 10: S. 3961-3976

Kober, Kirstin und Craig, George C. (2016): Physically Based Stochastic Perturbations (PSP) in the Boundary Layer to Represent Uncertainty in Convective Initiation. In: Journal of the Atmospheric Sciences, Bd. 73, Nr. 7: S. 2893-2911

Wang, Yong; Zhang, Guang J. und Craig, George C. (2016): Stochastic convective parameterization improving the simulation of tropical precipitation variability. In: Geophysical Research Letters, Bd. 43, Nr. 12: S. 6612-6619

Würsch, Michael und Craig, George C. (2014): A simple dynamical model of cumulus convection for data assimilation research. In: Meteorologische Zeitschrift, Bd. 23, Nr. 5: S. 483-490 [PDF, 540kB]

Diese Liste wurde am Sat Apr 20 21:06:24 2024 CEST erstellt.