首页> 外文期刊>Geologia Croatica: a journal of the Institute of Geology Zagreb and Croatian Geological Society >Verification of Engineering-Geological/Geotechnical Correlation Column and Reference Level of Correlation (RNK) Method by Observations in the Slip-Plane Zone
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Verification of Engineering-Geological/Geotechnical Correlation Column and Reference Level of Correlation (RNK) Method by Observations in the Slip-Plane Zone

机译:工程-地质/岩土工程相关性列和相关性参考水平(RNK)方法的验证通过滑移平面观测

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The engineering-geological/geotechnical correlation column can be established in zones of limited extent using one or several characteristic layers, one of which is selected as the reference layer. The Reference Level of Correlation method, i.e. the RNK (Referentni nivo korelacije in Croatian) method, is a confirmed procedure enabling the establishment of such columns. In the engineering geological/geotechnical correlation column, the plasticity index is the most significant indicator of the peak friction angle, full-softening friction angle and residual friction angle for coherent soils and soft rock formations. As a rule, maximum plasticity index values correspond to the minimum values of such friction angles. This opens up the possibility of an exact engineering-geological/geotechnical model, with accurate differentiation of minimum shear strength zones, zones of different permeability, and zones of various degrees of natural compaction. This procedure was applied inter alia on the successfully improved Granice landslide located in the Zagreb area, where it was proven that elements for verification based on the RNK-method exist for all three areas of investigation: sliding body – drain trench section – detail in the central portion of the sliding zone. The procedure is recommended as a means for finding solutions to similar problems.
机译:可以使用一个或几个特征层在有限的范围内建立工程地质/岩土工程相关性列,其中一层被选作参考层。相关水平的参考方法,即RNK(克罗地亚语中的Referentni nivo korelacije)方法,是可以建立此类色谱柱的公认方法。在工程地质/岩土工程的相关性栏中,可塑性指数是粘结土壤和软岩层的峰值摩擦角,全软化摩擦角和残余摩擦角的最重要指标。通常,最大塑性指数值对应于这种摩擦角的最小值。这就为建立精确的工程-地质/岩土模型提供了可能性,可以对最小抗剪强度区域,不同渗透率区域以及各种自然压实度区域进行精确区分。该程序尤其应用于萨格勒布地区成功改良的Granice滑坡,已证明在所有三个调查领域都存在基于RNK方法的验证要素:滑动体–排水沟断面–详细滑动区域的中心部分。建议将该程序作为寻找类似问题解决方案的一种方法。

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