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e?‘?-wave velocity test for assessment of geotechnical properties of some rock materials

机译:E?' - 波速测试,用于评估一些岩石材料的岩土性特性

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e?‘?-wave velocity test, a non-destructive and easy method to apply in both field and laboratory conditions, has increasingly been conducted to determine the geotechnical properties of rock materials. The aim of this study is to predict the rock properties including the uniaxial compressive strength, Schmidt hardness, modulus of elasticity, water absorption and effective porosity, slake durability index, saturated and dry density of rock using e?‘?-wave velocity (e?‘‰p). For this purpose geotechnical properties of nine different rock types were determined in the laboratory and their mineralogical composition examined using thin section analysis. Utilizing the generated data, sets of empirical equations were developed between e?‘‰p and relevant quantified rock parameters. The validity of the obtained empirical equations was confirmed using statistical analysis. It is evident that rock texture and mineralogical compositions affect the geotechnical properties of rock materials. Therefore, the best relationship obtained between both E and UCS with e?‘‰p in the correlation coefficient of 0.92 and 0.95 in that order. It is concluded that e?‘‰p could be practically used for estimating the measured rock properties except dry and saturated density of rocks (e?‘? = 0.58 and 0.46 respectively).
机译:e?波速测试是一种无损且易于在野外和实验室条件下使用的方法,已经越来越多地用于确定岩石材料的岩土特性。这项研究的目的是使用e?′波速(e)来预测岩石的特性,包括单轴抗压强度,施密特硬度,弹性模量,吸水率和有效孔隙率,耐久指数,岩石的饱和密度和干密度。 ?'‰ p )。为此,在实验室中确定了9种不同岩石类型的岩土属性,并使用薄截面分析检查了它们的矿物组成。利用生成的数据,在e?‰ p 和相关的定量岩石参数之间建立了经验方程组。使用统计分析证实了所获得的经验方程的有效性。显然,岩石的质地和矿物组成会影响岩石材料的岩土性能。因此,在E和UCS之间获得的最佳关系的相关系数分别为e?’ p 和0.92和0.95。得出的结论是,除了岩石的干密度和饱和密度(分别为e?′?= 0.58和0.46)外,e?’‰ p 可以实际用于估计测得的岩石特性。

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