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Application of spatial prediction techniques to defining three-dimensional landslide shear surface geometry

机译:空间预测技术在定义三维滑坡剪切面几何形状中的应用

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摘要

This study explores the application of interpolating and non-interpolating spatial prediction algorithms to interpreting shear surface geometries. A number of spatial prediction techniques have been tested, and the most appropriate algorithms for the Downie Slide dataset have been selected based on the root mean squared error (RMSE) determined from cross-validation. Visual assessment of reasonable spatial patterns has allowed for final selection of algorithms that produce geologically realistic results. Through this process, the performance of a number of interpolation algorithms has been tested in terms of accuracy and the development of reasonable spatial patterns. The goal of this study has been: (a) to develop a methodology for interpolating three-dimensional shear surface geometries and (b) to assess which interpolation methods are most appropriate for the interpretation of the Downie Slide basal slip surface geometry, based quantitatively on RMSE and qualitatively on the geological “trueness” of the geometric output.
机译:本研究探索了插值和非插值空间预测算法在解释剪切面几何形状中的应用。已经测试了许多空间预测技术,并且基于根据交叉验证确定的均方根误差(RMSE),为Downie Slide数据集选择了最合适的算法。可视化评估合理的空间格局,可以最终选择产生地质现实结果的算法。通过此过程,已经在准确性和合理的空间模式发展方面测试了多种插值算法的性能。这项研究的目标是:(a)开发一种用于对三维剪切表面几何形状进行插值的方法,以及(b)评估基于量化的基础,哪种插值方法最适合于解释Downie Slide基滑面几何形状的方法RMSE和定性地论几何输出的地质“真实性”。

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