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Using Indirect Testing Methods to Quickly Acquire the Rock Strength and Rock Mass Classification in Tunnel Engineering

机译:使用间接测试方法快速获取隧道工程中的岩石强度和岩体分类

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摘要

Uniaxial compressive strength (UCS) and tensile strength are essential parameters of rocks, but the direct measurement of these two parameters is time-consuming and requires high-quality samples. As such, academics brought attention to the indirect tests (such as point load test, ultrasonic wave velocity test, and Schmidt hammer test) that could be used to estimate UCS and tensile strength quickly. The empirical equations for estimating UCS and tensile strength of rocks in study cases remain poorly understood as previous equations based on indirect testing methods possess a lithological heterogeneity-dependent nature. Laboratory experiments (e.g., uniaxial compressive test, Brazilian test, point load test) and regression analysis were performed to acquire the correlation equations for calculating UCS or tensile strength of rocks based on indirect tests. Significant linear equations were derived and UCS or tensile strength can be estimated by point load test with acceptable discrepancy. The comparison study showed that using improper empirical equations to predict UCS and tensile strength can yield significant errors. A modified basic quality (BQ) rock mass classification system was also presented to conveniently classify the rock mass in study cases.
机译:单轴抗压强度(UCS)和抗拉强度是岩石的基本参数,但是直接测量这两个参数非常耗时,并且需要高质量的样品。因此,学者们将注意力转移到可用于快速估计UCS和抗张强度的间接测试(例如点载荷测试,超声波速度测试和施密特锤击测试)。估计研究案例中岩石的UCS和抗拉强度的经验方程式仍然知之甚少,因为以前基于间接测试方法的方程式具有岩性非均质性。进行了实验室实验(例如单轴压缩试验,巴西试验,点载荷试验)和回归分析,以获取基于间接试验计算UCS或岩石抗拉强度的相关方程式。得出了重要的线性方程,可以通过点载荷试验以可接受的差异估算UCS或抗张强度。比较研究表明,使用不正确的经验方程式来预测UCS和抗张强度会产生明显的误差。还提出了一种改进的基本质量(BQ)岩体分类系统,以方便地对研究案例中的岩体进行分类。

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