English

Study of Interaction and Complete Merging of Binary Cyclones Using Complex Networks

Geophysics 2023-01-24 v2 Atmospheric and Oceanic Physics Fluid Dynamics

Abstract

Cyclones are amongst the most hazardous extreme weather events on Earth. When two co-rotating cyclones come in close proximity, a possibility of complete merger (CM) arises due to their interactions. However, identifying the transitions in the interaction of binary cyclones and predicting the merger is challenging for weather forecasters. In the present study, we suggest an innovative approach to understand the evolving vortical interactions between the cyclones during two such CM events using time-evolving induced velocity based unweighted directed networks. We find that network-based indicators, namely, in-degree and out-degree, can quantify the changes during the interaction between two cyclones and are better candidates than the traditionally used separation distance to classify the interaction stages before a CM. The network indicators also help to identify the dominating cyclone during the period of interaction and quantify the variation of the strength of the dominating and merged cyclones. Finally, we show that the network measures also provide an early indication of the CM event well before its occurrence.

Keywords

Cite

@article{arxiv.2205.11789,
  title  = {Study of Interaction and Complete Merging of Binary Cyclones Using Complex Networks},
  author = {Somnath De and Shraddha Gupta and Vishnu R Unni and Rewanth Ravindran and Praveen Kasthuri and Norbert Marwan and Jürgen Kurths and R. I. Sujith},
  journal= {arXiv preprint arXiv:2205.11789},
  year   = {2023}
}

Comments

16 pages in double columns, 8 figures

R2 v1 2026-06-24T11:26:33.535Z