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Assessment of the Excavation-Damaged Zone in a Tall Rock Slope Using Acoustic Testing Method

机译:用声学测试方法评估高岩石坡中的挖掘机损伤区

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During slope excavation, high stresses can become concentrated in the rock mass because of stress redistribution. Failure of the rock mass creates an excavation-damaged zone (EDZ) in the slope. The damage reduces the acoustic wave velocity in the rock mass. Results of field tests measuring acoustic wave velocity at the Jinping I Hydropower Station are used here to study the EDZ in a tall rock slope. Two acoustic testing methods were adopted in the field tests: single-hole acoustic testing (SAT) and cross-hole acoustic testing (CAT). The acoustic wave velocity was lower in the EDZ, and the depth of the EDZ increased with decreasing slope elevation. Statistical analysis shows that the acoustic wave velocity obtained by the SAT method is larger than that obtained by the CAT method, and the relative difference between the SAT- and CAT-derived velocities is lower for a high quality rock mass than for a low quality rock mass. The integrity ratio and severity of damage can also be determined by acoustic wave velocity test results, revealing that the integrity ratio and elastic modulus of a rock mass are reduced in the EDZ.
机译:在坡挖掘过程中,由于应力再分布,高应力可以集中在岩体中。岩体的失败在坡度创造了挖掘损坏的区域(EDZ)。损坏降低了岩体中的声波速度。在此处使用测量锦平I水电站声波速度的现场试验的结果研究了高岩石坡度的edz。在现场测试中采用了两个声学测试方法:单孔声学测试(SAT)和交叉孔声学测试(CAT)。 EDZ中声波速度较低,EDZ的深度随着斜率降低而增加。统计分析表明,通过SAT方法获得的声波速度大于通过猫法获得的声波速度,并且饱和速度与高质量的岩石质量低于低质量岩石的相对差异较低大量的。损坏的完整性比和严重程度也可以通过声波速度测试结果确定,揭示岩体的完整性比和弹性模量在EDZ中降低。

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