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May 6, 2026Precision Agriculture0 citationsOpen Access

Canopy volume mitigates hail damage on grapevine berries: insights on the use of ground-based LiDAR and Bayesian probabilistic analysis

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MSMirko SodiniUniversity of UdineAPA PichierriUniversity of UdineDFDiego Tiozzo FasioloUniversity of Udine

Key Points

  • This research aims to assess how canopy volume and structure influence hail damage on grape bunches in vineyards.
  • Conducted an experiment with four canopy management practices in Northeastern Italy.
  • Monitored vineyard with LiDAR sensors before a hailstorm.
  • Analyzed data using Bayesian probabilistic analysis to infer damage relations.
  • Observed an average of 32% berry damage per bunch after the hailstorm.
  • Established that the basal canopy structure shields grape bunches, reducing overall damage.
  • Noted that greater canopy contraction correlates with less damage.

Abstract

Abstract Purpose Hailstorms are a relevant hazard for viticulture in Europe, with the northern regions of Italy being particularly vulnerable. The unpredictability of hailstorm events limits the possibility of extensive studies; therefore, hail damage on crops remains poorly investigated by the scientific community. Methods An experiment with four canopy management practices was established in Northeastern Italy, and ahailstorm event occurred on 24/07/2023.Through the LiDAR monitoring of the vineyard using a mobile robotic platform a few hours before the hailstorm event we were able to map the canopy structure and relate it to the berry damage. Results The vineyard showd an average of 32% of berries damaged per bunch. We found that the basal part of the canopy provided shielding for the grape bunches, resulting in reduced damage. Plants with basal damage also exhibited greater canopy contraction in the basal section, confirming the protective role of the canopy. The results were analyzed with a Bayesian approach to produce robust probabilistic inference. Conclusion Our study contributes to a better understanding of the dynamics of hail damage in viticulture and can be a valuable tool to better assess the risk of hail damage in vineyards. Graphical abstract Highlights Hailstorm damage on berries and canopy was monitored with LiDAR sensor 12 h before and after the event. The volume and projected area in the basal part of the canopy were associated with lower damage. Grapevines with high canopy contraction after the hail showed less damage.

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Cite This Study

Sodini et al. (2026) studied this question.

synapsesocial.com/papers/69faa30204f884e66b53398fhttps://doi.org/10.1007/s11119-026-10353-6
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