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Analysis on shear wave velocity structure of a gravel landslide based on dual-source surface wave method

机译:基于双源表面波法的砾石滑坡剪力波速度分析

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The depth and geometry of the potential sliding surface is the fundamental basis for evaluating the mechanism and performing mitigation measures of a landslide. The variation of shear wave velocity can directly reflect the characteristics of the strata structure in a landslide. For traditional methods (PS logging, surface exploration, H/V spectral ration and microtremor survey etc.), it is difficult to assure a large probing depth and high resolution at the same time. Joint observations were conducted using initiative-source multichannel analysis of surface wave (MASW) method and passive-source microtremor survey method (MSM) on the Xishan Village landslide located in Li County, Sichuan Province, China. Both frequency wave number method (F-K) and spatial auto correlation method (SPAC) were conducted to process the digital signal to analyze the shear wave velocity in the landslide, respectively. The Dual-source Surface Wave (DSSW) method was combined with MASW and MSM. The detected 2D profiles from the DSSW method showed that the landslide strata information was consistent with the borehole data. The results suggested that average depth of the potential sliding surface was about 50 m, of which the undulating shape was also clear. The boundary of the potential sliding surface was formed by weathered phyllite. It indicated that the DSSW method could assure both the exploration depth and enabling good resolution at the same time, which was an effective method to detect landslide structure and expected to be applied in survey of other geological hazards.
机译:电位滑动表面的深度和几何形状是评估机制和执行滑坡的缓解措施的基础基础。剪切波速度的变化可以直接反映滑坡中的地层结构的特性。对于传统方法(PS测井,表面勘探,H / V光谱比例和MICRORREMOR调查等),难以同时确保大量探测深度和高分辨率。使用位于中国四川省李县的西山村滑坡上的表面波(MasW)方法和被动源微调调查方法(MSM)进行联合观察。进行频率波数法(F-K)和空间自动相关方法(SPAAC)以处理数字信号以分别分析滑坡中的剪切波速度。双源表面波(DSSW)方法与MasW和MSM组合。来自DSSW方法的检测到的2D配置文件显示滑坡地层信息与钻孔数据一致。结果表明,电位滑动表面的平均深度约为50米,其中起伏的形状也很清楚。潜在滑动表面的边界由风化的植物料形成。它表明,DSSW方法可以同时确保勘探深度和实现良好分辨率,这是检测滑坡结构和预期在其他地质灾害调查中应用的有效方法。

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