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The Effect of Joint Conditions on the Longitudinal and Flexural Wave Velocities of a Rock Mass

机译:联合条件对岩体纵向和弯曲波速度的影响

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The behavior of a jointed rock is different from that of an intact rock, and the characteristics of elastic wave propagation in a jointed rock are different from those of an intact rock. In this study, a rock resonant column testing device is designed to measure the longitudinal and flexural wave velocities of jointed rocks under different states of stress. A column of more than 12 rock discs is stacked on a steel base, which acts as a free-fixed system. This configuration ensures that waves propagate under an equivalent continuum condition, thereby rendering a constant and unique velocity. The effect of joint conditions on the wave velocities is investigated through rock resonant, column testings. The results show that velocities are sensitive to the state of stress and increase nonlinearly with stress. The velocities are also affected byjoint conditions such as roughness, spacing, and filling. The results are useful for rock mass classification based on near-surface geophysical characterization.
机译:连接岩石的行为与完整岩石的行为不同,并且连接岩石中的弹性波传播的特性与完整岩石的弹性波传播不同。在该研究中,岩石谐振柱测试装置旨在测量不同状态下的关节岩石的纵向和弯曲波速度。一张超过12个岩石盘堆叠在钢基底上,这充当了自由固定系统。该配置确保波在等效连续体条件下传播,从而呈现恒定和独特的速度。通过岩谐振,柱测试研究了关节条件对波速度的影响。结果表明,速度对压力状态敏感,并与压力下的非线性增加。速度也受到粗糙度,间隔和填充的相干条件的影响。结果对于基于近表面地球物理表征的岩体质量分类是有用的。

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