All Stories

  1. From logistic regression to deep learning: machine learning modeling of lightning in ERA5 reanalysis data
  2. Supplementary material to "From logistic regression to deep learning: machine learning modeling of lightning in ERA5 reanalysis data"
  3. Unreliability in Global Convective Parameter Trends from ReanalysisDatasets
  4. Contrasting trends in very large hail events and related economic losses across the globe
  5. A Statistical Model to Forecast Tornadoes and Reconstruct Their Climatology and Trends Globally
  6. AR-CHaMo probabilistic forecasts of convective hazards with ECMWF ensemble
  7. Anything from 10 to 686 km, or what influences the hail swath length in supercells?
  8. Automated Severe Thunderstorm Oulooks from thundeR Package (ASTORP)
  9. Cell Mergers, Boundary Interactions, and Convective Systems in Cases of Significant Tornadoes and Hail
  10. Challenges of developing AR-CHaMo for severe convective wind gust forecasting
  11. Environments associated with lightning occurrence based on pre- and post-convective rawinsonde measurements in Central Europe
  12. Global Perspectives on Convective Storm Frequency from Multi-Reanalysis Climatology
  13. Global climatology and trends in modeled Storm Prediction Center (SPC) risk categories 
  14. Machine Learning-based Global Lightning Prediction from Convective Parameters
  15. Quasi-Linear Convective Systems and Derechos across Europe: Climatology, Accompanying Hazards, and Societal Impacts
  16. Quasi-linear convective systems and derechos across Europe: ERA5 convective environments and synoptic-scale patterns
  17. Severe storm research with thundeR package - improvements in calculation procedures of convective parameters
  18. The Future of (Very) Large Hail Globally: Application of the AR-CHaMo models to the CMIP6 Ensemble
  19. The kinematic and thermodynamic environment during cloud-to-ground lightning occurrence in Poland
  20. The role of Mediterranean cyclone structure in modulating convective activity
  21. What do large hail, tornado and severe thunderstorm wind environments have in common across continents?
  22. Convective environments and hazards in Mediterranean cyclones
  23. Very Large Hail in a Warming Climate: Climatology, Trends and Losses
  24. Quasi-Linear Convective Systems and Derechos across Europe: Climatology, Accompanying Hazards, and Societal Impacts
  25. Modelled Multidecadal Trends in (Very) Large Hail in Europe, the United States and Globally
  26. Severe Storms Research at ESSL
  27. The kinematic and thermodynamic environment during cloud-to-ground lightning occurrence in Poland
  28. Major Role of Marine Heatwave and Anthropogenic Climate Change on a Giant Hail Event in Spain
  29. The climatology of supercell thunderstorms across Poland based on multisource data
  30. Climatological aspects of quasi-linear convective systems across Europe
  31. Do severe storms across Australia, Europe and the United States share similarities? A comparison of atmospheric profiles and environmental predictors
  32. thundeR - a rawinsonde package for processing convective parameters and visualizing atmospheric profiles
  33. thundeR - a rawinsonde package for processing convective parameters and visualizing atmospheric profiles
  34. Climatological aspects of quasi-linear convective systems across Europe
  35. Do severe storms across Australia, Europe and the United States share similarities? A comparison of atmospheric profiles and environmental predictors
  36. Evaluation of ESTOFEX convective outlooks from 2007 to 2021. Part 2: climatology and reliability of threat level polygons 
  37. Giant hail in Poland produced by a supercell merger in extreme instability
  38. Identifying predictors of large hail, severe convective wind gusts, and tornadoes across Europe and North America: towards the development of global convective hazard models.
  39. Pre-storm environments and storm-scale properties of the major hailstorms of 2021 and 2022 in Europe.
  40. Reconstruction of violent tornado environments in Europe: High-resolution dynamical downscaling of ERA5
  41. Analyzing the derecho system over Poland on 11 August 2017. Preface to the topical issue
  42. Reconstruction of Violent Tornado Environments in Europe: High‐Resolution Dynamical Downscaling of ERA5
  43. Machine learning classification of significant tornadoes and hail in the U.S. using ERA5 proximity soundings
  44. Global climatology and trends in convective environments from ERA5 and rawinsonde data
  45. Comparison of Convective Parameters Derived from ERA5 and MERRA-2 with Rawinsonde Data over Europe and North America
  46. Differing Trends in United States and European Severe Thunderstorm Environments in a Warming Climate
  47. Determination of Surface Precipitation Type Based on the Data Fusion Approach
  48. Change of Thunderstorms and Tornadoes
  49. Homogeneity of Climate Series
  50. Severe Convective Storms across Europe and the United States. Part I: Climatology of Lightning, Large Hail, Severe Wind, and Tornadoes
  51. Severe Convective Storms across Europe and the United States. Part II: ERA5 Environments Associated with Lightning, Large Hail, Severe Wind, and Tornadoes
  52. Near-Ground Wind Profiles of Tornadic and Nontornadic Environments in the United States and Europe from ERA5 Reanalyses
  53. Climatology and atmospheric conditions associated with cool season bow echo storms in Poland
  54. A 10-Year Radar-Based Climatology of Mesoscale Convective System Archetypes and Derechos in Poland
  55. The Climatology of Significant Tornadoes in the Czech Republic
  56. Hazardous weather affecting European airports: Climatological estimates of situations with limited visibility, thunderstorm, low-level wind shear and snowfall from ERA5
  57. Application of machine learning to large hail prediction - The importance of radar reflectivity, lightning occurrence and convective parameters derived from ERA5
  58. Derecho Evolving from a Mesocyclone—A Study of 11 August 2017 Severe Weather Outbreak in Poland: Event Analysis and High-Resolution Simulation
  59. High-resolution simulation of an isolated tornadic supercell in Poland on 20 June 2016
  60. A Climatology of Thunderstorms across Europe from a Synthesis of Multiple Data Sources
  61. Homogenization of air temperature and its long-term trends in Poznań (Poland) for the period 1848–2016
  62. Multihazard Weather Risk Perception and Preparedness in Eight Countries
  63. Climatological Aspects of Convective Parameters over Europe: A Comparison of ERA-Interim and Sounding Data
  64. Atmospheric circulation and sounding-derived parameters associated with thunderstorm occurrence in Central Europe
  65. Deadly Tornadoes in Poland from 1820 to 2015
  66. Sounding-Derived Parameters Associated with Convective Hazards in Europe
  67. Wind Shear and the Strength of Severe Convective Phenomena—Preliminary Results from Poland in 2011–2015
  68. Convective and non-convective wind gusts in Poland, 2001-2015
  69. An isolated tornadic supercell of 14 July 2012 in Poland — A prediction technique within the use of coarse-grid WRF simulation
  70. Relationship between human observations of thunderstorms and the PERUN lightning detection network in Poland
  71. A Cloud-to-Ground Lightning Climatology for Poland
  72. Tornado Climatology of Poland
  73. Atmospheric conditions of thunderstorms in the European part of the Arctic derived from sounding and reanalysis data
  74. Large Hail in Poland in 2012
  75. Sounding-derived parameters associated with tornado occurrence in Poland and Universal Tornadic Index
  76. Forecasting the possible emergence of tornadoes in Poland