ECSS2023-42, updated on 03 Mar 2023
https://doi.org/10.5194/ecss2023-42
11th European Conference on Severe Storms
© Author(s) 2023. This work is distributed under
the Creative Commons Attribution 4.0 License.

Estimates of the relationship among characteristics of severe convective storms, their cloud-top properties, and environmental parameters in Northern Eurasia

Alexander V. Chernokulsky1, Andrey Shikhov2, Yulia Yarinich1,3, and Alexander Sprygin4
Alexander V. Chernokulsky et al.
  • 1Obukhov Institute of Atmospheric Physics RAS, Moscow, Russian Federation (a.chernokulsky@ifaran.ru)
  • 2Perm State University, Perm, Russian Federation
  • 3Lomonosov Moscow State University, Moscow, Russian Federation
  • 4Scientific and Production Association "Typhoon", Obninsk, Russian Federation

Severe convective storms that produced tornadoes and straight-line winds usually develop under peculiar environmental conditions and have specific signatures on the cloud tops associated with intense updrafts. In this study, we performed a comparative analysis of satellite-derived characteristics, with a focus on cloud-top properties, and ERA5-based environmental parameters of convective storms in forested regions of the western part of Northern Eurasia in 2006–2021. The analyzed sample includes 128 different convective storms that produced 138 tornadoes and 143 linear windstorms. We found most of the tornadoes and linear windstorms are generated by quasi-linear convective storms or supercells. Such supercells form under lower convective instability and precipitable water content compared to those for other types of storms. We found a significant negative correlation of minimum temperature on the storm cloud top with instability parameters. In its turn, the longevity of convective storms significantly correlates with wind shear and storm-relative helicity. About half of the tornadoes and 2/3 of linear windstorms are associated with the presence of cloud top signatures, like overshooting tops, cold-ring, or cold U/V features. The events associated with such signatures are formed under high values of instability parameters. Our results can be used for further analysis of the peculiarities of a tornado and linear windstorm formation and to enhance the predictability of such severe events, especially in regions with a lack of weather radar coverage. 

How to cite: Chernokulsky, A. V., Shikhov, A., Yarinich, Y., and Sprygin, A.: Estimates of the relationship among characteristics of severe convective storms, their cloud-top properties, and environmental parameters in Northern Eurasia, 11th European Conference on Severe Storms, Bucharest, Romania, 8–12 May 2023, ECSS2023-42, https://doi.org/10.5194/ecss2023-42, 2023.