Root reinforcement is a mechanism through which forests contribute to the prevention and mitigation of shallow instabilities in soils, one of the main hazards in mountain areas. This study aims to assess how spatial tree distribution and whether thinning operations affect root reinforcement in the most common forest types of the European Southern Alps. We measured size and position of the trees of 119 stands, belonging to sweet chestnut, European beech, Norway spruce, and spruce-beech-silver fir forest types. We developed, calibrated and validated a model for estimating root reinforcement at the stand level, using the spatial distribution of tree diameter as the input variable. Finally, we simulated a thinning of 18% stand basal area, selecting removal trees from smaller diameter classes (low thinning) or from random clusters (random cluster thinning), and assessed its effect on root reinforcement. Root reinforcement statistically differed among forest types and the lowest values were found in the sweet chestnut forest type. Irrespective of the forest type, low thinning did not significantly modify root reinforcement, while random cluster thinning reduced it five-fold.

Effects of tree spacing and thinning on root reinforcement in mountain forests of the European Southern Alps / A. Cislaghi, E. Alterio, P. Fogliata, A. Rizzi, E. Lingua, G. Vacchiano, G.B. Bischetti, T. Sitzia. - In: FOREST ECOLOGY AND MANAGEMENT. - ISSN 0378-1127. - 482(2021 Feb 15), pp. 118873.1-118873.13. [10.1016/j.foreco.2020.118873]

Effects of tree spacing and thinning on root reinforcement in mountain forests of the European Southern Alps

A. Cislaghi;P. Fogliata;G. Vacchiano;G.B. Bischetti;
2021

Abstract

Root reinforcement is a mechanism through which forests contribute to the prevention and mitigation of shallow instabilities in soils, one of the main hazards in mountain areas. This study aims to assess how spatial tree distribution and whether thinning operations affect root reinforcement in the most common forest types of the European Southern Alps. We measured size and position of the trees of 119 stands, belonging to sweet chestnut, European beech, Norway spruce, and spruce-beech-silver fir forest types. We developed, calibrated and validated a model for estimating root reinforcement at the stand level, using the spatial distribution of tree diameter as the input variable. Finally, we simulated a thinning of 18% stand basal area, selecting removal trees from smaller diameter classes (low thinning) or from random clusters (random cluster thinning), and assessed its effect on root reinforcement. Root reinforcement statistically differed among forest types and the lowest values were found in the sweet chestnut forest type. Irrespective of the forest type, low thinning did not significantly modify root reinforcement, while random cluster thinning reduced it five-fold.
protection forest; root reinforcement; tree roots; shallow landslides; natural hazards; disaster risk reduction
Settore AGR/05 - Assestamento Forestale e Selvicoltura
Settore AGR/08 - Idraulica Agraria e Sistemazioni Idraulico-Forestali
   THREE distribution patterns: HillslopE failuRe preventiOn through forest management THREE:HERO
   THREE:HERO
   FONDAZIONE CARIPLO
   2017-0714
15-feb-2021
5-gen-2021
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/803113
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