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Experimental and theoretical studies in support of implementing the Spectral-Analysis-of-Surface-Waves (SASW) method offshore.

机译:支持在海上实施表面波频谱分析(SASW)方法的实验和理论研究。

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摘要

An experimental study of underwater surface wave testing was undertaken to study the implementation of the Spectral-Analysis-of-Surface-Waves (SASW) method offshore. The SASW method is a nondestructive and nonintrusive method for evaluating the shear wave velocity profile of geotechnical materials, structural elements, and construction materials. The SASW methodology involves exciting motions on the exposed surface of a solid, and measuring the phase velocity of the surface wave as it propagates past receivers also located on the surface. On land the surface wave is called a Rayleigh wave, and underwater the surface wave is called a Scholte wave. Shear wave velocity profiles are determined by matching theoretical results to the experimental measurements. The objectives of this research were to: (1) study and understand factors affecting the application of the SASW methodology offshore, and (2) develop equipment for implementing the SASW method offshore.; Experiments were performed at several underwater sites, primarily in the ocean, using a variety of sources, receivers, and testing configurations. Body wave velocities from crosshole and downhole tests or soil boring information were used to compare with the results from the SASW testing. Theoretical results were developed to supplement and verify experimental observations. Experiments performed with an explosive source demonstrated the potential for interference and misinterpretation due to acoustic wave motions in the water column, motions not typically modeled in the theoretical solution. Near-surface testing, performed in shallow water using small impactive sources, demonstrated a lower level of near-field interference in the underwater testing as compared to on land. Field implementation of a small, remotely-operated impactive source was effective for near-surface shear wave velocity profiling offshore. Small-scale tank testing demonstrated the potential use of hydrophones to detect and measure the phase velocity of the underwater interface wave. These results were consistent with tests performed using a hammer source and geophone receivers.; The results from these tests should lead to the development of a robust system for performing SASW testing underwater.
机译:进行了水下表面波测试的实验研究,以研究海上近海波谱分析(SASW)方法的实施。 SASW方法是一种非破坏性和非侵入性方法,用于评估岩土材料,结构元件和建筑材料的剪切波速度分布。 SASW方法涉及在固体的裸露表面上激发运动,并测量表面波传播通过同样位于该表面上的接收器时的相速度。在陆地上,表面波称为瑞利波,而在水下,表面波称为Scholte波。通过将理论结果与实验测量值相匹配来确定剪切波速度曲线。本研究的目的是:(1)研究和理解影响海上SASW方法应用的因素;(2)开发用于海上SASW方法实施的设备。在各种水下地点(主要是在海洋中)进行了实验,使用了各种来源,接收器和测试配置。来自井间和井下测试的体波速度或土壤钻孔信息被用于与SASW测试的结果进行比较。开发了理论结果以补充和验证实验观察结果。用爆炸源进行的实验表明,由于声波在水柱中的运动而产生的干扰和误解的可能性,这种运动通常在理论解决方案中未建模。与陆地上相比,使用小型冲击源在浅水中进行的近地表测试表明,水下测试中的近场干扰水平较低。小型远程操作冲击源的现场实施对于海上近地表剪切波速度剖面有效。小型水箱测试证明了水听器在检测和测量水下界面波的相速度方面的潜在用途。这些结果与使用锤击源和地震检波器进行的测试一致。这些测试的结果应导致开发用于在水下执行SASW测试的强大系统。

著录项

  • 作者

    Rosenblad, Brent Lyndon.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Civil.; Physics Acoustics.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 299 p.
  • 总页数 299
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学 ; 声学 ;
  • 关键词

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