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Effects of bathymetric lidar errors on flow properties predicted with a multi-dimensional hydraulic model

机译:测深激光雷达误差对多维水力模型预测流动特性的影响

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摘要

New remote sensing technologies and improved computer performance now allow numerical flow modeling over large stream domains. However, there has been limited testing of whether channel topography can be remotely mapped with accuracy necessary for such modeling. We assessed the ability of the Experimental Advanced Airborne Research Lidar, to support a multi-dimensional fluid dynamics model of a small mountain stream. Random point elevation errors were introduced into the lidar point cloud, and predictions of water surface elevation, velocity, bed shear stress, and bed mobility were compared to those made without the point errors. We also compared flow model predictions using the lidar bathymetry with those made using a total station channel field survey. Lidar errors caused <1 cm changes in the modeled water surface elevations. Effects of the point errors on other flow characteristics varied with both the magnitude of error and the local spatial density of lidar data. Shear stress errors were greatest where flow was naturally shallow and fast, and lidar errors caused the greatest changes in flow cross-sectional area. The majority of the stress errors were less than ± 5 Pa. At near bankfull flow, the predicted mobility state of the median grain size changed over ≤ 1.3% of the model domain as a result of lidar elevation errors and ≤ 3% changed mobility in the comparison of lidar and ground-surveyed topography. In this riverscape, results suggest that an airborne bathymetric lidar can map channel topography with sufficient accuracy to support a numerical flow model.
机译:新的遥感技术和改进的计算机性能现在允许在大型流域上进行数值流建模。但是,对于通道地形是​​否可以以这种建模所需的精度进行远程映射的测试有限。我们评估了实验性先进机载激光雷达的能力,以支持小型山区河流的多维流体动力学模型。将随机点高程误差引入到激光雷达点云中,并将水面高程,速度,床层切应力和床层迁移率的预测与没有点差的预测值进行比较。我们还比较了使用激光雷达测深法的流量模型预测与使用全站仪渠道实地调查得出的流量模型预测。激光雷达误差导致模拟水表面高程变化小于1厘米。点误差对其他流动特性的影响随误差大小和激光雷达数据的局部空间密度而变化。剪应力误差在流量自然较浅且较快的地方最大,而激光雷达误差导致流量横截面积的变化最大。大多数应力误差小于±5 Pa。在接近堤岸流量时,由于激光雷达仰角误差,中值晶粒尺寸的预测迁移率状态在模型域的≤1.3%范围内变化,而在3-4%范围内,迁移率变化的范围为≤3%。激光雷达和地面勘测地形的比较。在此河流景观中,结果表明,机载测深激光雷达可以足够精确地绘制通道地形图,以支持数值流模型。

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