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A Description for Rock Joint Roughness Based on Terrestrial Laser Scanner and Image Analysis

机译:基于地面激光扫描仪和图像分析的节理粗糙度描述

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摘要

Shear behavior of rock mass greatly depends upon the rock joint roughness which is generally characterized by anisotropy, scale effect and interval effect. A new index enabling to capture all the three features, namely brightness area percentage (BAP), is presented to express the roughness based on synthetic illumination of a digital terrain model derived from terrestrial laser scanner (TLS). Since only tiny planes facing opposite to shear direction make contribution to resistance during shear failure, therefore these planes are recognized through the image processing technique by taking advantage of the fact that they appear brighter than other ones under the same light source. Comparison with existing roughness indexes and two case studies were illustrated to test the performance of BAP description. The results reveal that the rock joint roughness estimated by the presented description has a good match with existing roughness methods and displays a wider applicability.
机译:岩体的剪切行为在很大程度上取决于岩石节理的粗糙度,通常以各向异性,尺度效应和间隔效应为特征。提出了一种新的索引,该索引能够捕获亮度区域百分比(BAP)的所有三个特征,以基于从地面激光扫描仪(TLS)导出的数字地形模型的合成照明来表示粗糙度。由于只有与剪切方向相反的微小平面在剪切破坏期间有助于抵抗力,因此,利用在相同光源下它们看上去比其他平面亮的事实,通过图像处理技术可以识别这些平面。说明了与现有粗糙度指标的比较和两个案例研究,以测试BAP描述的性能。结果表明,本文提出的方法估算的岩石节理粗糙度与现有的粗糙度方法具有很好的匹配性,并且具有更广泛的适用性。

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