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Comparative Study of Field Seismic Tests at a Multi-layered Model Testing Site

机译:多层模型试验场现场地震试验的比较研究

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摘要

To obtain a shear-wave velocity (V_s) profile in geotechnical practice, various seismic investigations are being frequently used. Due to discordant shear wave velocity profile of each test, it is important to develop the representative Vs profile considering the reliability and applicability of each seismic test. In this study, a model testing site which composed of four local layers with size about 16m*26m*8.5m (W*L*H) was designed and constructed for a comparative study of field seismic tests. To evaluate the dynamic material properties of each layer, total of 140 vertical and horizontal geophones were embedded at the boundary of each layer, and the locations of geophones and model geometry were measured by surveying during construction process. Using the interval travel time between embedded geophones, the body wave velocities of each layers were obtained as reference data for evaluation of other seismic tests. Down-hole, SASW, MASW and HWAW tests were performed at the model testing site and the Vs profiles of each test and reference data of model site were compared. The advantages and disadvantages of applied seismic tests and the reliability of new innovative HWAW method were discussed.
机译:为了在岩土工程实践中获得横波速度(V_s)剖面,经常进行各种地震研究。由于每个测试的剪切波速度分布不一致,因此,考虑到每个地震测试的可靠性和适用性,开发具有代表性的Vs轮廓非常重要。在这项研究中,设计并建造了一个由四个局部层组成的模型测试站点,大小约为16m * 26m * 8.5m(W * L * H),用于现场地震测试的比较研究。为了评估每层的动态材料特性,在每层的边界处总共嵌入了140台垂直和水平地震检波器,并在施工过程中通过测量来测量地震检波器的位置和模型几何形状。使用嵌入式地震检波器之间的间隔传播时间,获得了各层的体波速度,作为评估其他地震测试的参考数据。在模型测试现场进行了井下,SASW,MASW和HWAW测试,并比较了每个测试的Vs曲线和模型现场的参考数据。讨论了应用地震测试的优缺点和新颖的HWAW方法的可靠性。

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