首页> 外文期刊>Near surface geophysics >Shear-wave velocity profiling at sites with high stiffness contrasts: a comparison between invasive and non-invasive methods
【24h】

Shear-wave velocity profiling at sites with high stiffness contrasts: a comparison between invasive and non-invasive methods

机译:高刚度部位的剪切波速度剖面对比:侵入性和非侵入性方法之间的比较

获取原文
获取原文并翻译 | 示例
           

摘要

Three sites of the Italian Strong Motion Network (RAN) have been selected for detailed S-wave profiling, using both borehole and surface wave seismic methods. At these sites, the presence of stiffness contrasts within the soil column is found to influence the surface wave propagation profoundly. Advanced aspects in surface wave inversion such as resolution, accuracy and higher-mode interpretation must be properly taken into account to obtain realistic results from the surface wave dispersion observations. The possibility of mode misidentification and the loss of resolution with depth in surface wave interpretation are explored using synthetic modelling together with active and passive seismic data sets. With high stiffness contrasts, the possibility of mode jumps and higher mode dominance over specific frequency ranges is very probable. This is true also for normally dispersive sites, where the shear velocity increases with depth, though higher mode dominance is recognized as more common in the case of a shear-wave velocity inversion within the soil column and the sensitivity of the dispersion curves with respect to those layers beneath the low-velocity zone may be significantly reduced. Pitfalls in the inversion resulting from mode misidentification can be avoided by investigating the effective phase velocity distribution, using active data sets and full waveform seismic modelling. When an unambiguous modal identification is achieved, the results obtained by surface wave inversion are very satisfactorily consistent with borehole data.
机译:已选择意大利强运动网络(RAN)的三个地点,使用井眼和表面波地震方法进行详细的S波分析。在这些位置,发现土柱内存在刚度差异会严重影响表面波的传播。必须适当考虑表面波反演的高级方面,例如分辨率,精度和更高模式的解释,才能从表面波频散观测中获得真实的结果。使用合成建模以及主动和被动地震数据集,探索了模式错误识别的可能性以及表面波解释中分辨率随深度的损失。在高刚度对比下,极有可能在特定频率范围内出现模式跳跃和更高的模式优势。对于正常的分散点也是如此,在剪切点处,剪切速度会随着深度的增加而增加,尽管在土柱内发生剪切波速度倒转以及色散曲线相对于其敏感度的情况下,较高的模式优势被认为更为普遍。低速区下方的那些层可能会大大减少。通过使用有效数据集和全波形地震模型研究有效的相速度分布,可以避免由于模式识别错误而导致的反演中的误区。当进行模态识别时,通过表面波反演获得的结果与井眼数据非常令人满意。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号