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Assessing regional scale habitat area with a three dimensional measure

机译:用三维尺度评估区域尺度的栖息地

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摘要

A method of measuring the three-dimensional (3D) area of habitats across a regionally complex cultural landscape is described. It is based on overlaying field mapped habitats from sample grid squares onto a digital terrain model of topography constructed using triangulated irregular networks to calculate a terrain corrected area (3D area). The method is suitable for regional-scale ecological studies and has the potential to be used to determine habitat metrics other than area that are sensitive to dimensionality. It is pragmatic with currently available software. The extent to which the area of habitats is underestimated by a two-dimensional (2D) area measure, compared with a 3D measure, is assessed. There was a significantly greater 3D area of all habitat types. The 2D to 3D area increase was especially large in specific seminatural habitats associated with topographic complexity and agricultural land use constraints. They included European Priority Habitats of high conservation value such as dry heath and calcareous grassland. This is of direct relevance for assessing area-based biodiversity evaluation criteria. The economic consequences of 3D area adjustments to production subsidies for agricultural habitats and agri-environment scheme payments were large if applied at a regional scale, especially in marginal upland and upland farms.
机译:描述了一种在整个区域复杂的文化景观中测量生境的三维(3D)区域的方法。它基于将来自采样网格正方形的野外映射栖息地叠加到使用三角不规则网络构建的地形数字地形模型上,以计算地形校正区域(3D区域)。该方法适用于区域规模的生态研究,并且有潜力用于确定对维数敏感的区域以外的栖息地指标。使用当前可用的软件实用。与3D测量相比,通过二维(2D)面积测量低估了栖息地面积的程度。所有栖息地类型的3D面积都大得多。在特定的半自然生境中,从2D到3D的面积增加尤其大,这与地形复杂性和农业用地限制相关。其中包括具有高保护价值的欧洲优先栖息地,例如荒地和石灰质草地。这与评估基于地区的生物多样性评估标准直接相关。如果在区域规模上应用3D区域调整对农业栖息地的生产补贴和农业环境计划付款的经济后果是巨大的,尤其是在边缘的旱地和旱地农场。

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