PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
October 18, 2025Meteorologiya i Gidrologiya0 citations

Application of Some Effects of the Theory of Hydrodynamic Streamlining of Solid Bodies to Deep Convective Clouds

View Full Paper
SPS.D. PLYUSNINVPV.P. POPOVA

Key Points

  • Convective clouds can exhibit vortex stages influenced by dynamic flows in the atmosphere, primarily under specific Reynolds number conditions.
  • The study identifies up to four vortices and five stationary updraft zones within a cloud, shaped by the surrounding shear environment.
  • Dynamic flows in a shear atmosphere can affect the propagation and motion of clouds, necessitating a detailed examination of Reynolds number impacts.
  • The angle of incoming dynamic flow relative to the cloud's elongation plays a critical role in the vortex composition of deep convective clouds.

Abstract

Based on the laws of the hydrodynamic flow around a solid body, including a rotating one, some ideas about the shear-inertial mechanisms of propagation and motion of deep convective clouds in a shear atmosphere are developed. The analysis of the wind hodograph in a Lagrangian coordinate system moving along the steering flow reveals the flows dynamically influencing a cloud at different levels, primarily at the surface and middle ones. These flows onto and around an object, together the rear inertial streamline flow of a cloud intensively gaining mass and the rotation of this cloud, form the above mechanisms. When the dynamic flow of the middle layer streamlines the dense body of a cloud in a certain range of values of the Reynolds number, the cloud may enter the vortex stage. This stage may be represented by either stationary cyclonic or anticyclonic vortices, or by their couplet capable of dividing, with a specific mechanism of propagation and motion. Together with similarly appearing surface layer vortices, their total number in a cloud can reach four. A four-vortex complex may contain five stationary updraft zones. The control parameter of the vortex composition of a cloud is the angle of the deviation of the vector of the incoming dynamic flow relative to the perpendicular to the elongation of the dense body of the cloud.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

PLYUSNIN et al. (2025) studied this question.

synapsesocial.com/papers/68f35bfc73f0a7d050f47dc1https://doi.org/10.52002/0130-2906-2025-5-54-67
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Horizontal mesoscale vortices in the atmosphere1965
  2. 2Numerical Assessment of Advective and Diffusive Dynamics of Interacting and Isolated Prototypical Convectively Initiated Circulations2025
  3. 3Dynamics of Downdrafts Around a Growing Convective Cloud: A Numerical Study2025
  4. 4The Role of the Toroidal Vortex in Cumulus Clouds' Entrainment and Mixing2024 · 7 citations
  5. 5Towards an understanding of the interaction between convection and the larger-scale in the tropics1988