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Journal of The Royal Society Interface· 2026Q1

From random walks to thermal rides: universal anomalous transport in soaring flights

Jérémie Vilpellet, Alexandre Darmon, Michael Benzaquen

Short summary

Soaring flights (paraglider, hang glider, sailplane) follow a universal transport law, showing persistently sub-ballistic horizontal motion with a Hurst exponent of ~0.88, largely independent of aircraft type.

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Key points

  • Soaring flight trajectories exhibit persistently sub-ballistic horizontal motion (Hurst exponent ≈0.88) beyond initial ballistic phases.
  • This universal transport law is largely independent of aircraft type (paraglider, hang glider, sailplane).
  • Anomalous transport stems from the intermittent, 2D, and directionally correlated nature of atmospheric updrafts.
  • Pilot skill influences the search phase, but atmospheric structure and the climb cycle are primary transport drivers.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Cross-country soaring flights rely on intermittent atmospheric updrafts to cover long distances, producing trajectories that alternate between rapid relocation and local exploration. From a large dataset of paraglider, hang glider and sailplane flights, we uncover a universal transport law: beyond short ballistic times, horizontal motion is persistently sub-ballistic, with a Hurst exponent ≈0.88 largely independent of aircraft type. Phase-resolved analysis using a probabilistic segmentation method shows that this scaling arises from the fundamentally intermittent, two-dimensional and directionally correlated nature of soaring transport, in which successive ballistic segments do not add coherently. We find that pilot skill, reflected in more efficient exploration and decision-making, manifests primarily in the search phase, enhancing the ability to efficiently probe the air mass and locate the next thermal. Overall, our results suggest that atmospheric structure and the generic organization of the transition–search–climb cycle dominate transport properties, placing human soaring alongside biological and physical systems where anomalous transport emerges from intermittency and persistence.

The authors' abstract, as published at the source. Journal of The Royal Society Interface, 2026 · DOI ↗

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Field: Modeling and Simulation

Modeling and SimulationMathematics