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Characterizing the Landscape Structure of Urban Wetlands Using Terrain and Landscape Indices

机译:使用地形和景观指数表征城市湿地景观结构

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摘要

Several studies have shown human impacts on urban wetlands. These impacts are mostly studied at broad scales, which may generalize and aggregate important information needed for landscape quantification or terrain analysis. This situation can weakly or inappropriately address the structure of wetland landscapes, thus affecting the assessment of the quantities and qualities of terrestrial wetland habitats. To address these issues for urban wetland dynamics, this study proposes the use of landscape and terrain indices to characterize the landscape structure of urban wetlands at a fine scale in order to assess its usefulness in contributing to wildlife sustainability. To achieve this goal, secondary terrain attribute data are integrated with an object-based satellite image classification at the wetland and watershed level. The result reveals a general swell in wetland coverage at the watershed level. Further analysis shows the size and shape complexities, and edge irregularities are increased significantly at the patch level but slightly at the watershed level. Terrain analysis further reveals a potential increase in wetness and decrease in stream power vulnerability for most of the major wetlands under study. These results suggest that terrain and landscape indices are effective in characterizing the structure of urban wetlands that supports socio-ecological sustainability.
机译:几项研究表明对城市湿地的影响。这些影响主要是在广泛的尺度上进行的,这可能概括并汇总景观量化或地形分析所需的重要信息。这种情况略微或不恰当地解决了湿地景观的结构,从而影响了陆地湿地栖息地数量和品质的评估。为了解决城市湿地动态的这些问题,本研究提出了景观和地形指数,以精细规模地表征城市湿地的景观结构,以评估其对野生动物可持续性的有用性。为实现这一目标,辅助地形属性数据与湿地和流域水平的基于对象的卫星图像分类集成。结果揭示了流域水平的湿地覆盖范围一般膨胀。进一步的分析显示尺寸和形状复杂性,边缘不规则性在贴片水平上显着增加,但在流域水平略微增加。地形分析进一步揭示了在研究下大多数主要湿地的流动漏洞潜在增加和流动漏洞。这些结果表明,地形和景观指数有效地表征了支持社会生态可持续性的城市湿地结构。

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