首页> 外文期刊>Journal of Applied Geophysics >Characterization of an earth-filled dam through the combined use of electrical resistivity tomography, P- and SH-wave seismic tomography and surface wave data
【24h】

Characterization of an earth-filled dam through the combined use of electrical resistivity tomography, P- and SH-wave seismic tomography and surface wave data

机译:通过结合使用电阻率层析成像,P波和SH波地震层析成像以及表面波数据来对土坝进行表征

获取原文
获取原文并翻译 | 示例
       

摘要

The determination of the current state of buildings and infrastructures through non-invasive geophysical methods is a topic not yet covered by technical standards, since the application of high resolution geophysical investigations to structural targets is a relatively new technology. Earth-filled daminvestigation is a typical engineering application of this type.We propose the integration of Electrical Resistivity Tomography and P- and SH-wave seismic measurements for imaging the geometry of the dam's body and the underlying soil foundations and to characterize the lowstrain elastic properties. Because S-wave velocity is closely tied to engineering properties such as shear strength, low-velocity zones in the S-wave velocity models are of particular interest. When acquiring seismic data on earth filled dams, it is not uncommon to encounter highly attenuative surface layers. If only lightweight seismic sources are available, the seismic data generally exhibit a narrow frequency bandwidth: the lack of high frequency components generally prevents fromhaving good quality shallow reflections. If there is no possibility to increase the power as well as the frequency content of the seismic source, the integration of other seismicmethods than reflection may be the only available way to achieve a reliable near surface seismic characterization. For these reasons, we combined P- and SH-wave tomography withMultichannel Analysis of Surface Waves to image the internal and the underlying soil foundations of an earth filled dam located in Central Italy. In the presence of moderate velocity contrasts, tomographic methods have proven successful in imaging near surface variations along both the horizontal and vertical directions. On the other hand, body wave propagation is severely affected by attenuation under the previously described conditions, so that the quality of picked traveltimes dramatically decreases with offset and, consequently, the tomographic investigation generally lacks penetration depth. For this reason, we further interpreted the seismic shot gathers acquired for the tomographic reconstruction as surface wave data, to increase the depth of penetration and to retrieve the S-wave velocity of the soil foundations. The simultaneous use of P- and S-wave tomography allowed us to verify the sub-horizontal layering of the dam in terms of seismic velocities, whereas the surface wave interpretation allowed us to determine the S-wave values of the in-place alluvial deposits, excluding the presence of irregular features and very strong velocity contrasts within and below the structure. Similarly, Electrical Resistivity Tomography confirmed that the dam body is homogeneous without any anomalous variations both laterally and with depth. The geophysical results will be used to guide the future retrofitting intervention at the site.
机译:通过非侵入性地球物理方法确定建筑物和基础设施的当前状态是技术标准尚未涵盖的话题,因为将高分辨率地球物理研究应用于结构目标是一项相对较新的技术。填土坝研究是此类工程的典型应用。我们建议将电阻层析成像和P波和SH波地震测量方法相结合,以对坝体和下层土壤基础的几何形状进行成像,并表征低应变弹性特性。由于S波速度与工程特性(例如抗剪强度)紧密相关,因此S波速度模型中的低速区域尤其令人关注。当采集土坝上的地震数据时,遇到高度衰减的表层并不少见。如果只有轻型地震源可用,则地震数据通常会显示出较窄的频率带宽:缺少高频分量通常会阻止获得高质量的浅反射。如果不可能增加地震源的功率和频率含量,则除反射以外的其他地震方法的集成可能是实现可靠的近地表地震特征的唯一可用方法。由于这些原因,我们将P波和SH波层析成像技术与表面波多通道分析相结合,以对位于意大利中部的土坝的内部和地下土壤基础进行成像。在存在中等速度对比的情况下,层析成像方法已被证明可以成功成像沿水平和垂直方向的近表面变化。另一方面,在上述条件下,体波的传播受到衰减的严重影响,因此,所拾取的行进时间的质量随着偏移而显着降低,因此,层析成像研究通常缺乏穿透深度。因此,我们将层析成像重建获得的地震波集进一步解释为表面波数据,以增加穿透深度并检索土壤基础的S波速度。 P波和S波断层扫描的同时使用使我们能够根据地震速度来验证大坝的亚水平分层,而表面波解释使我们能够确定就地冲积物的S波值,不包括结构内外的不规则特征和非常强的速度对比。同样,电阻层析成像技术证实坝体是均匀的,在横向和深度上都没有异常变化。地球物理结果将用于指导该站点未来的改造干预。

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