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Wind as a natural disturbance agent in forests: a synthesis

2012/09/04 by S. J. Mitchell, Stephen J. Mitchell · 505 citations
Earth and Planetary Sciences · Engineering · Environmental Science · #Aeolian processes and effects #Agroforestry #Biology #Disturbance (geology) #Ecology #Ecology and Vegetation Dynamics Studies #Environmental resource management #Environmental science #Forest management #Forestry #Geography #Geology #Meteorology #Natural (archaeology) #Natural hazard #Tree Root and Stability Studies #Windthrow

paper · doi:10.1093/forestry/cps058

published in Forestry An International Journal of Forest Research 86(2), 147-157 (Oxford University Press)

openalex publication_date 2012/09/04 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/01

Abstract

Windthrow is all too often looked at as an exceptional, catastrophic phenomenon rather than a recurrent natural disturbance that falls within the spectrum of chronic and acute effects of wind on forests, and that drives ecosystem patterns and processes. This paper provides an integrative overview of the nature, contributing factors and impacts of wind-caused disturbance in forests, including its effects on trees, stands, landscapes and soils. Windthrow is examined through the integrating concepts of: the capacity of trees for acclimative growth, the limitation of acclimative growth under inter-tree competition, the recurrent nature of severe weather, how terrain and soil conditions affect local stand vulnerability and the effect of recurrent windthrow on stand dynamics and soils. Windthrow management should take place within a framework of general risk management, with evaluation of the likelihood, severity and potential impacts of wind damage considered – with reference to the broad and specific aims of management. There is much to be gained from interdisciplinary communication about the nature and consequences of recurrent wind damage. There are opportunities for climatologists, engineers, ecologists, geomorphologists and others to develop integrative process models at the tree, stand and landscape scales that will improve our collective understanding, and inform management decision-making.

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