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Back Analysis and Calculation of Dynamic Mechanical Parameters of Rock Mass with Measured Blasting Vibration Signals

机译:测量爆破振动信号的岩体动态力学参数的回分析与计算

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摘要

How to obtain dynamic parameters of rock masses quickly and precisely is a popular and difficult problem, which plays a very important part in engineering design or construction. Currently, the methods used to obtain these parameters are in situ testing method, empirical formula, and so on. However, these methods have some shortcomings, such as large investment and long construction period, which cannot obtain the dynamic parameters precisely and quickly in the engineering scale. In this study, a new method of estimating the rock parameters based on the measured field blasting vibration signals is proposed according to theory of elastic stress wave. In addition, an improved method for S-wave identification used in engineering scale was proposed and then the numerical simulation is given to verify the feasibility. Comparison of the numerical identification results and theoretical results clearly show that the improved method is available in S-wave identification with errors less than 2%. By identifying the arrival times of P and S waves, the propagation velocities of P and S waves are calculated and the parameters of rock mass can be obtained at last. Through analyzing the measured field blasting vibration signals in Fengning pumped-storage power station, the dynamic elastic modulus of rock mass inversed by vibration signals is about 2.2~2.9 times of its static elastic modulus, while the inversed dynamic Poisson's ratio is 0.9~0.975 times of the static.
机译:如何快速且精确地获得岩体的动态参数是一个流行且难题的问题,这在工程设计或施工中起着非常重要的部分。目前,用于获得这些参数的方法是原位测试方法,经验公式等。然而,这些方法具有一些缺点,如大型投资和长施工期,这不能在工程规模中精确迅速地获得动态参数。在该研究中,根据弹性应力波理论提出了一种基于测量的场爆破振动信号估计岩石参数的新方法。此外,提出了一种改进的用于工程刻度的S波识别方法,然后给出了数值模拟来验证可行性。数值鉴定结果和理论结果的比较清楚地表明,改进的方法在S波识别中可用,误差小于2%。通过识别P和S波的到达时间,计算P和S波的传播速度,并且可以最后获得岩体的参数。通过分析了泵送泵送电站中的测量现场爆破振动信号,振动信号反转的岩体质量的动态弹性模量约为其静态弹性模量的2.2〜2.9倍,而反转动态泊松比率为0.9〜0.975倍静态。

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