首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Propagation of a Finite-Amplitude Elastic Pulse in a Bar of Berea Sandstone: A Detailed Look at the Mechanisms of Classical Nonlinearity, Hysteresis, and Nonequilibrium Dynamics
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Propagation of a Finite-Amplitude Elastic Pulse in a Bar of Berea Sandstone: A Detailed Look at the Mechanisms of Classical Nonlinearity, Hysteresis, and Nonequilibrium Dynamics

机译:有限幅度弹性脉冲在Berea砂岩的条形中传播:详细看看经典非线性,滞后和非醌动态的机制

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We study the propagation of a finite-amplitude elastic pulse in a long thin bar of Berea sandstone. In previous work, this type of experiment has been conducted to quantify classical nonlinearity, based on the amplitude growth of the second harmonic as a function of propagation distance. To greatly expand on that early work, a noncontact scanning 3-D laser Doppler vibrometer was used to track the evolution of the axial component of the particle velocity over the entire surface of the bar as functions of the propagation distance and source amplitude. With these new measurements, the combined effects of classical nonlinearity, hysteresis, and nonequilibrium dynamics have all been measured simultaneously. We show that the numerical resolution of the 1-D wave equation with terms for classical nonlinearity and attenuation accurately captures the spectral features of the waves up to the second harmonic. However, for higher harmonics the spectral content is shown to be strongly influenced by hysteresis. This work also shows data which quantify not only classical nonlinearity but also the nonequilibrium dynamics based on the relative change in the arrival time of the elastic pulse as a function of strain and distance from the source. Finally, a comparison is made to a resonant bar measurement, a reference experiment used to quantify nonequilibrium dynamics, based on the relative shift of the resonance frequencies as a function of the maximum dynamic strain in the sample.
机译:我们研究了在Berea砂岩的长薄块中的有限幅度弹性脉冲的传播。在以前的工作中,已经进行了这种类型的实验以量化了经典的非线性,基于第二次谐波的幅度生长作为传播距离的函数。为了大大扩展到早期工作,使用非接触式扫描3-D激光多普勒振动计来跟踪粒子速度的轴向分量的轴向分量作为传播距离和源幅度的功能。通过这些新测量,所有全部测量经典非线性,滞后和非频体动态的综合影响。我们表明,对于经典非线性和衰减的术语,1-D波方程的数值分辨率精确地捕获到第二谐波的波的光谱特征。然而,对于更高的谐波,光谱含量显示出受滞后的强烈影响。这项工作还显示了不仅是经典非线性而定量的数据,而且基于弹性脉冲到达时间的相对变化作为应变的函数和与源的距离的函数的相对变化来定量非QuibiRibimics。最后,基于谐振频率的相对移位作为样本中的最大动态应变的函数,对谐振条测量进行了比较,该参考实验是基于谐振频率的相对偏移量来定量非频体动态。

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