Landscape configuration and storm characteristics drive spatial patterns of wind disturbance in boreal forest landscapes

IF 4 2区 环境科学与生态学 Q1 ECOLOGY Landscape Ecology Pub Date : 2024-06-19 DOI:10.1007/s10980-024-01916-x
Niko Kulha, Juha Heikkinen, Jonathan Holder, Juha Honkaniemi, Mikko Kuronen, Mikko Laapas, Susanne Suvanto, Mikko Peltoniemi
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Abstract

Context

Wind is an important disturbance in circumboreal forests, and its frequency and severity may change with climate change, highlighting the need to understand the drivers of wind disturbance. Currently, how landscape configuration drives wind disturbance is poorly understood.

Objectives

We investigated whether and how landscape configuration is related to the extent and spatial pattern of wind disturbance, and how these relationships vary between windstorms and thunderstorms.

Methods

We used salvage logging data after 16 storms that occurred in Finland between 2011 and 2021. We placed a total of 301 landscapes, each encompassing an area of 8024 ha, within the storm tracks and used regression models to test how wind disturbance extent, disturbance patch size, number of disturbance patches, and disturbance patch clustering were related to landscape configuration and storm characteristics.

Results

Increasing mean gap size and edge density, including permanent openings (e.g., lakes) and recent harvest gaps, increased disturbance extent, disturbance patch size, and number of disturbance patches. Conversely, increasing mean harvest gap size decreased disturbance patch clustering. Increasing wind speed had the largest contribution to increasing disturbance extent and number of disturbance patches, and decreasing disturbance patch clustering, with the magnitude of the effect varying between windstorms and thunderstorms.

Conclusions

The extent and spatial pattern of wind disturbances varied with landscape configuration and storm characteristics. Disturbance patches were larger in landscapes with large canopy gaps, resulting in a greater disturbance extent, exacerbated by increasing wind speed and thunderstorm development.

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景观配置和风暴特征驱动北方森林景观中风扰动的空间模式
背景风是环周森林中的一种重要干扰,其频率和严重程度可能会随着气候变化而改变,因此需要了解风干扰的驱动因素。目前,人们对景观配置如何驱动风扰动还知之甚少。我们研究了景观配置是否以及如何与风扰动的程度和空间模式相关,以及这些关系在暴风和雷暴之间有何不同。我们将总计 301 个景观(每个景观占地 8024 公顷)置于风暴轨迹内,并使用回归模型来检验风扰动范围、扰动斑块大小、扰动斑块数量和扰动斑块集群与景观配置和风暴特征之间的关系。结果平均间隙大小和边缘密度(包括永久性开口(如湖泊)和近期采伐间隙)的增加会增加扰动范围、扰动斑块大小和扰动斑块数量。相反,平均采伐间隙大小的增加会减少干扰斑块的集群。风速的增加对扰动范围和扰动斑块数量的增加以及扰动斑块集群的减少影响最大,风暴和雷暴之间的影响程度不同。在树冠间隙较大的地貌中,扰动斑块更大,导致扰动范围更大,而风速的增加和雷暴的发展又加剧了扰动。
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来源期刊
Landscape Ecology
Landscape Ecology 环境科学-地球科学综合
CiteScore
8.30
自引率
7.70%
发文量
164
审稿时长
8-16 weeks
期刊介绍: Landscape Ecology is the flagship journal of a well-established and rapidly developing interdisciplinary science that focuses explicitly on the ecological understanding of spatial heterogeneity. Landscape Ecology draws together expertise from both biophysical and socioeconomic sciences to explore basic and applied research questions concerning the ecology, conservation, management, design/planning, and sustainability of landscapes as coupled human-environment systems. Landscape ecology studies are characterized by spatially explicit methods in which spatial attributes and arrangements of landscape elements are directly analyzed and related to ecological processes.
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