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Discussion on the Theoretical Basis for Cross-Over Method Applied to Downhole Wave Velocity Test

机译:浅谈井下波速试验的交叉方法的理论基础

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At engineering practice, the theoretical basis for the cross-over method, used to obtain shear wave arrival time in the downhole method of the wave velocity test by surface forward and backward strike, is that the polarity of P-wave keeps the same, while the polarity of S-wave transforms when the direction of strike inverted. However, the characteristics of signals recorded in tests are often found to conflict with this theoretical basis for the cross-over method, namely, the polarity of the P-wave also transforms under the action of surface forward and backward strike. Therefore, 3D finite element numerical simulations were conducted to study the validity of the theoretical basis for the cross-over method. The results show that both shear and compression waves are observed to be in 180° phase difference between horizontal signal traces, consistent with the direction of excitation generated by reversed impulse. Furthermore, numerical simulation results prove to be reliable by the analytic solution; it shows that the theoretical basis for the cross-over method applied to the downhole wave velocity test is improper. In meanwhile, numerical simulations reveal the factors (inclining excitation, geophone deflection, inclination, and background noise) that may cause the polarity of the P-wave not to reverse under surface forward and backward strike. Then, as to reduce the influence factors, we propose a method for the downhole wave velocity test under surface strike, the time difference of arrival is based between source peak and response peak, and numerical simulation results show that the S-wave velocity by this method is close to the theoretical S-wave velocity of soil.
机译:在工程实践中,通过表面前进和向后撞击获得沿井下方法的交叉方法的理论依据,用于通过表面向前和向后撞击,是P波的极性保持不变当撞击方向倒置时S波变换的极性。然而,经常发现测试中记录的信号的特性与交叉方法的这种理论基础冲突,即,P波的极性也在表面前向后撞击的作用下变换。因此,进行了3​​D有限元数值模拟,以研究交叉方法的理论依据的有效性。结果表明,观察到剪切和压缩波在水平信号迹线之间观察到180°相位差,与反转脉冲产生的激发方向一致。此外,数值模拟结果证明是通过分析解决方案可靠的;它表明,应用于井下波速度试验的交叉方法的理论基础是不正确的。同时,数值模拟揭示了可能导致P波的极性在表面前向后撞击下方的因素(倾斜激励,地震孔偏转,倾斜度和背景噪声)。然后,为了减少影响因素,我们提出了一种在表面冲击下的井下波速度测试的方法,到达的时间差是基于源极峰和响应峰之间的,数值模拟结果表明S波速度方法接近土壤的理论S波速度。

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