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Quantifying the target state of forest stands managed with the continuous cover approach – revisiting Möller's “Dauerwald” concept after 100 years

Bibliographic Data

ID19586347
AuthorsMelissa Stiers (University of Göttingen, corresponding author), Peter Annighöfer (0000-0001-8126-5307, Technical University of Munich), Dominik Seidel (0000-0003-4131-9424, University of Göttingen), Katharina Willim (0000-0002-0129-3381, University of Göttingen), Liane Neudam, Liane C Neudam (0000-0002-8902-3940, University of Göttingen), Christian Ammer (0000-0002-4235-0135, University of Göttingen)
Year2020
Volume1
Pages100004
Publication date2020-06-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueTrees Forests and People (JOURNAL)
Journal identifiersISSN: 2666-7193 • E-ISSN: 2666-7193
PublisherElsevier BV (PUBLISHER)
DOI10.1016/j.tfp.2020.100004
OpenAlexW3029683190
LanguageEN
Citations received2
References cited33

Continuous cover forestry is often considered a management alternative to age-class forestry, in closer compliance with economic as well as societal demands. It is further thought to provide forest stands of high stability and resilience under conditions of climate change. The guiding principle for the stand structure of continuous cover forestry systems is to create managed forest stands that are multi-layered and hence of high structural diversity. Past studies of both these characteristics have been mostly qualitative. Here we used data from terrestrial laser scanning (TLS) to quantify differences in stand structure between forests managed for decades according to the continuous cover concept and forests managed otherwise. We found that the vertical distribution of plant material in the continuous cover stands was relatively homogeneous and similar to the vertical distribution found in primary European beech forests. We also found that the structural complexity of continuous cover forests was significantly higher than that of even-aged monocultures of Scots pine and Norway spruce. Based on these findings, a scaled index was developed that quantifies structural attributes of TLS point clouds and can significantly distinguish continuous cover forests from even-aged forests. This index may be a useful tool to quantify the difference in structure of a given continuous cover forest stand from a “target structure”, meaning the theoretical structure describing an ideal continuous cover forest

Algorithm · Geography · Engineering · Environmental Science · Forest Ecology and Biodiversity Studies · Forest ecology and management · Forest Management and Policy · Mathematics · Forestry

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  • Integrative approaches as an opportunity for the conservation of forest biodiversity

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  • Plenterwald, Dauerwald, or clearcut

    Open Access•Timo Pukkala•Forest Policy and Economics•2015

  • Forest Management and Biodiversity Conservation Based on Natural Ecosystem Dynamics in Northern Europe

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Unique citing works2
Citations per year0,5
Citation span2022 - 2024 (3)
Citation velocityrecent
Highly citedNo
Citation typesNeutral: 2

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