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LiDAR derived ecological integrity indicators for riparian zones: Application to the Houille river in Southern Belgium/Northern France

机译:LiDAR得出的河岸带生态完整性指标:在比利时南部/法国北部的Houille河中的应用

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摘要

Riparian zones are central landscape features providing several ecosystem services and are exceptionally rich in biodiversity. Despite their relatively low area coverage, riparian zones consequently represent a major concern for land and water resource managers confirmed within several European directives. These directives involve effective multi-scale monitoring to assess their conditions and their ability to carry out their functions. The objective of this research was to develop automated tools to provide from a single aerial LiDAR dataset new mapping tools and keystone riparian zone attributes assessing the ecological integrity of the riparian zone at a network scale (24 km reach).Different metrics were extracted from the original LiDAR point cloud, notably the Digital Terrain Model and Canopy Height Model rasters, allowing the extraction of riparian zones attributes such as the wetted channel (0.89 m; mean residual) and floodplain extents (6.02 m; mean residual). Different riparian forest characteristics were directly extracted from these layers (patch extent, overhanging character, longitudinal continuity, relative water level, mean and relative standard deviation of tree height). Within the riparian forest, the coniferous stands were distinguished from deciduous and isolated trees, with high accuracy (87.3 %, Kappa Index).Going further the mapping of the indicators, our study proposed an original approach to study the riparian zone attributes within different buffer width, from local scale (50 m long channel axis reach) to a network scale (ca 2 km long reaches), using a disaggregation/re-agraggation process. This novel approach, combined to graphical presentations of the results allow natural resource managers to visualise the variation of upstream-downstream attributes and to identify priority action areas. In the case study, results showed a general decrease of the riparian forests when the river crosses built-up areas. They also highlighted the lower flooding frequency of riparian forest patches in habitats areas.Those results showed that LiDAR data can be used to extract indicators of ecological integrity of riparian zones in temperate climate zone. They will enable the assessment of the ecological integrity of riparian zones to be undertaken at the regional scale (13000 km, completely covered by an aerial LIDAR survey in 2013).
机译:河岸带是提供多种生态系统服务的中央景观特征,并且生物多样性异常丰富。尽管沿岸地区的覆盖率相对较低,但对于一些欧洲指令中确认的土地和水资源管理者来说,这仍然是一个主要问题。这些指令涉及有效的多尺度监控,以评估其状况及其执行功能的能力。这项研究的目的是开发自动化工具,以从单个航空LiDAR数据集中提供新的制图工具和梯形河岸带属性,以评估网络规模(24 km范围)河岸带的生态完整性。原始的LiDAR点云,尤其是数字地形模型和冠层高度模型栅格,可以提取河岸带属性,例如湿通道(0.89 m;平均残差)和洪泛区范围(6.02 m;平均残差)。从这些层中直接提取不同的河岸森林特征(斑块范围,悬垂特征,纵向连续性,相对水位,树高的均值和相对标准偏差)。在河岸带森林中,针叶林与落叶树和孤立树区分开来,具有很高的准确度(Kappa指数为87.3%)。宽度,从本地规模(50 m长的通道轴距离)到网络规模(ca 2 km长),使用分解/重新聚集过程。这种新颖的方法与结果的图形表示相结合,使自然资源管理者可以可视化上游-下游属性的变化并确定优先行动领域。在案例研究中,结果显示,当河流穿过建成区时,河岸森林总体减少。他们还强调了栖息地河岸森林斑块的泛滥频率较低,这些结果表明LiDAR数据可用于提取温带气候区河岸带生态完整性的指标。它们将使能够在区域范围内(13000 km,2013年由LIDAR航空调查完全覆盖)进行河岸带生态完整性的评估。

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