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首页> 外文期刊>Journal of geophysics and engineering >Surface and subsurface non-invasive investigations to improve the characterization of a fractured rock mass
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Surface and subsurface non-invasive investigations to improve the characterization of a fractured rock mass

机译:地面和地下非侵入性研究,以改善裂隙岩体的特征

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Three-dimensional assessment and modelling of fractured rock slopes is a challenging task.The reliability of the fracture network definition is of paramount importance for several engineering and geotechnical applications, and so far, different approaches have been proposed to improve the assessment procedure.A thorough knowledge of the actual fracture system is necessary to construct an accurate geometrical model of the rock mass and to determine block size distribution within the rock body.This paper describes the integration of diverse techniques used to define the rock mass fracture pattern, focusing on the most important fracture features, which are joint orientation, spacing, and persistence.A case study in the north of Italy was selected in order to show the potential of an integrated approach where surface and subsurface investigations are coupled.The rock surface was analysed by means of both standard geological mapping and terrestrial laser scanning.Ground penetrating radar surveys were conducted to image and map the discontinuity planes inside the rock mass and to estimate fracture persistence.The results obtained from the various investigation methodologies were employed to construct a model of the rock mass.This approach may lead to a better understanding of fracture network features, usually observed only on the rock surface.A careful analysis of block size distribution in a rock body can be of valuable help in several engineering and risk mitigation applications.
机译:裂缝岩质边坡的三维评估和建模是一项艰巨的任务。裂缝网络定义的可靠性对于几种工程和岩土工程应用至关重要,到目前为止,已经提出了各种方法来改进评估程序。要建立一个准确的岩体几何模型并确定岩体中的块体尺寸分布,必须了解实际的裂缝系统。本文介绍了用于定义岩体破裂模式的各种技术的集成,重点是重要的裂缝特征是缝的方向,间距和持久性。选择意大利北部的一个案例研究,以显示将地表和地下研究结合起来的综合方法的潜力。标准地质测绘和地面激光扫描。探地雷达进行了调查以对岩体内部的不连续面进行成像和绘图,并估计裂缝的持久性。采用各种调查方法获得的结果来构建岩体模型,这种方法可能有助于更好地理解裂缝网络通常仅在岩石表面上才能观察到的特征。仔细分析岩体中块体的大小分布,对于某些工程和减轻风险的应用可能具有宝贵的帮助。

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