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Extracting topographic swath profiles across curved geomorphic features

机译:提取弯曲地貌特征中的地形测绘剖面

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We present a new method to extend the widely used geomorphic technique of swath profiles towards curved geomorphic structures such as river valleys. In contrast to the established method that hinges on stacking parallel cross sections, our approach does not refer to any individual profile lines, but uses the signed distance from a given baseline (for example, a valley floor) as the profile coordinate. The method can be implemented easily for arbitrary polygonal baselines and for rastered digital elevation models as well as for irregular point clouds such as laser scanner data. Furthermore it does not require any smoothness of the baseline and avoids over- and undersampling due to the curvature of the baseline. The versatility of the new method is illustrated by its application to topographic profiles across valleys, a large subduction zone, and the rim of an impact crater. Similarly to the ordinary swath profile method, the new method is not restricted to analyzing surface elevations themselves, but can aid the quantitative description of topography by analyzing other geomorphic features such as slope or local relief. It is even not constrained to geomorphic data, but can be applied to any two-dimensional data set such as temperature, precipitation or ages of rocks.
机译:我们提出了一种将广泛使用的地貌剖面地貌技术扩展到弯曲地貌结构(例如河谷)的新方法。与依赖于堆叠平行横截面的既定方法相反,我们的方法不引用任何单独的轮廓线,而是使用距给定基线(例如,谷底)的有符号距离作为轮廓坐标。对于任意的多边形基线,栅格数字高程模型以及不规则点云(例如激光扫描仪数据),都可以轻松实现该方法。此外,它不需要基线的任何平滑度,并且避免了由于基线的曲率而引起的过采样和欠采样。新方法的多功能性通过将其应用到横跨山谷,大俯冲带和撞击坑边缘的地形剖面中得以说明。与普通的条带剖面法相似,新方法不仅限于分析地表高程本身,而是可以通过分析其他地貌特征(例如坡度或局部起伏)来帮助定量描述地形。它甚至不限于地貌数据,而是可以应用于任何二维数据集,例如温度,降水或岩石年龄。

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