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Using airborne multispectral imagery to evaluate geomorphic work across floodplains of gravel-bed rivers

机译:使用机载多光谱图像评估砾石床河流泛滥平原的地貌工作

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摘要

Fluvial processes of cut and fill alluviation and channel abandonment or avulsion are essential for maintaining the ecological health of floodplain ecosystems characteristic of gravel-bed rivers. These dynamic processes shape the floodplain landscape, resulting in a shifting mosaic of habitats, both above and below ground. We present a new and innovative methodology to quantitatively assess the geomorphic work potential necessary to maintain a shifting habitat mosaic for gravel-bed river floodplains. This approach can be used to delineate critical habitats for preservation through land acquisition and conservation easements, often critical elements of river restoration plans worldwide. Spatially explicit modeling of water depth, flow velocity, shear stress, and stream power derived from surface hydraulic measurements was combined with airborne multispectral remote sensing for detailed modeling of floodplain water surfaces over tens to hundreds of square kilometers. The model results were then combined within a GIS framework to determine potential nodes of channel avulsion that delineate spatially explicit zones across the floodplain where the potential for geomorphic work is the greatest. Results of this study demonstrate the utility of integrating existing multispectral remote sensing data coupled with time-lagged ground-based measures of flow hydraulics to model fluvial processes at relatively fine spatial resolutions but over broad regional extents.
机译:冲积和冲积冲积的河床过程以及河道的废弃或破坏是维持砾石床河流特征的漫滩生态系统生态健康所必不可少的。这些动态过程塑造了泛滥平原的景观,从而导致了地上和地下生境的变化。我们提出了一种新的创新方法,定量评估了维持砾石床河漫滩的生境镶嵌变化所需的地貌工作潜力。这种方法可用于划定重要的栖息地,以通过土地获取和保护地役权来保护,这通常是全球河流恢复计划的关键要素。通过对水深,流速,剪切应力和来自地面水力测量的水流功率进行空间显式建模,并结合机载多光谱遥感技术,对数十至数百平方公里的洪泛区水面进行详细建模。然后,将模型结果在GIS框架内进行组合,以确定潜在的渠道撕脱节点,这些通道在整个洪泛区划定了空间显性区域,其中地貌工作的潜力最大。这项研究的结果证明了将现有的多光谱遥感数据与时滞地面水力水力测量方法相结合的实用性,可以在相对精细的空间分辨率下但在较大的区域范围内对河流过程进行建模。

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