All Stories

  1. Insights into convection over the Alps exploiting multisensor multiplatform observations and deep learning methods
  2. Learning Convective Cloud Structures from Satellite Data for Severe Weather Analysis and Model Evaluation over the Alps
  3. Characterizing trade‐wind shallow convection regimes in the open sea with a synergy of ship‐based vertical profiling observations
  4. Learning about (hail-) storm development exploiting supervised and self-supervised deep learning and MSG imagery
  5. Self-supervised cloud classification using satellite infrared imagery to characterize extreme precipitation events over the Alps 
  6. Self-supervised deep-learning of cloud spatio-temporal features to improve understanding of processes and evolutions of cloud organizations.
  7. Atmospheric stability from numerical weather prediction models and microwave radiometer observations for onshore and offshore wind energy applications
  8. A detailed statistics of cloud and precipitation processes in the trades from the RV M.S. Merian
  9. High-resolution model evaluation with self-supervised neural network approach targeted on severe storms over the Alps
  10. Investigation of climatic changes for hailstorms over the Alps using spatiotemporal satellite imagery and self-supervised machine learning
  11. Pattern Recognition of Convection in the Atlantic Intertropical Convergence Zone
  12. Atmospheric stability from microwave radiometer observations for on/offshore wind energy applications
  13. Supplementary material to "Atmospheric stability from microwave radiometer observations for on/offshore wind energy applications"
  14. Capturing the Diversity of Mesoscale Trade Wind Cumuli Using Complementary Approaches From Self‐Supervised Deep Learning
  15. Capturing the diversity of mesoscale trade wind cumuli using complementary approaches from self-supervised deep learning
  16. Ground- and ship-based microwave radiometer measurements during EUREC4A
  17. Capturing the diversity of mesoscale trade wind cumuli using complementary approaches from self-supervised deep learning
  18. Understanding Cloud Systems’ Structure and Organization Using a Machine’s Self-Learning Approach
  19. Complementary approaches in self-supervision to exploit EUREC4A measurements and satellite observations for cloud systems over North Atlantic trades
  20. Ground- and ship-based microwave radiometer measurements during EUREC4A
  21. Isotopic measurements in water vapor, precipitation, and seawater during EUREC4A
  22. Fast Atmospheric Response to a Cold Oceanic Mesoscale Patch in the North‐Western Tropical Atlantic
  23. Investigation on the impact of environmental parameters on ship-based observations of trade wind shallow cumuli and precipitation.
  24. Isotopic measurements in water vapor, precipitation, and seawater during EUREC4A
  25. Supplementary material to "Isotopic measurements in water vapor, precipitation, and seawater during EUREC4A"
  26. EUREC4A's Maria S. Merian ship-based cloud and micro rain radar observations of clouds and precipitation
  27. EUREC4A
  28. EUREC4A's Maria S. Merian ship-based cloud and micro rain radar observations of clouds and precipitation
  29. Ship- and island-based atmospheric soundings from the 2020 EUREC4A field campaign
  30. EUREC4A
  31. EUREC<sup>4</sup>A
  32. Ship- and island-based atmospheric soundings from the 2020 EUREC4A field campaign
  33. Detection and attribution of aerosol–cloud interactions in large-domain large-eddy simulations with the ICOsahedral Non-hydrostatic model
  34. Precipitation within EUREC4A: a multi-sensor ship-based approach to tackle warm rain processes
  35. The Added Value of Large-eddy and Storm-resolving Models for Simulating Clouds and Precipitation
  36. Detection and attribution of aerosol-cloud interactions in large-domain large-eddy simulations with ICON
  37. A New Criterion to Improve Operational Drizzle Detection with Ground-Based Remote Sensing
  38. Optimizing observations of drizzle onset with millimeter-wavelength radars
  39. Optimizing observations of drizzle onset with millimeter-wavelength radars
  40. Optimizing observations of drizzle onset with millimeter-wavelength radars
  41. Optimizing observations of drizzle onset with millimeter-wavelength radars
  42. Optimizing observations of drizzle onset with millimeter-wavelength radars
  43. JOYCE: Jülich Observatory for Cloud Evolution