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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Delaney Park Geotechnical Array Dynamic Properties Inferred from the Magnitude 7.1 2018 Anchorage, Alaska, Earthquake Sequence
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Delaney Park Geotechnical Array Dynamic Properties Inferred from the Magnitude 7.1 2018 Anchorage, Alaska, Earthquake Sequence

机译:Selaney Park摇滚山脉阵列动态属性从幅度7.1 anchorage,阿拉斯加,地震序列推断

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We used waveforms from the 2018 M_W 7.1 Anchorage earthquake and six selected aftershocks, ranging from M_W 4.2 to 5.7, to quantify site properties including shear-wave velocity profile, predominant frequencies, borehole amplification, soil-damping ratio, and shear modulus at Delaney Park in downtown Anchorage, Alaska. The waveforms were recorded by surface and six borehole (up to 61-m depth) three-component accelerometers. The deconvolution of the waveforms at various borehole depths on horizontal sensors with respect to the corresponding waveform at the surface provides incident and reflected traveling waves within the soil column. The shear-wave velocities determined from these events are consistent, and generally agree well with the in situ measurements. The borehole amplification based on surface-to-borehole traditional standard spectral ratio (SSR) and surface-to-borehole response spectral ratio (RSR) and cross-spectral ratio (c-SSR) were also evaluated. Based on c-SSR, we computed the borehole amplification as 4.8 at 1.35 Hz (0.74 s), close to the predominant frequency of the soil column.
机译:我们使用来自2018 M_W 7.1锚地地震的波形和六个选定的余震,从M_W 4.2到5.7,量化位点属性,包括剪切波速度曲线,主要频率,钻孔放大,土壤阻尼比和在Delaney Park的剪切模量在安克雷奇市中心,阿拉斯加。波形由表面和六个钻孔(最高61米深度)三组分加速度计记录。在水平传感器上关于表面上的相应波形的各种钻孔深度的波形的去卷积提供了土柱内的入射和反射行驶波。从这些事件确定的剪切波速度是一致的,并且通常与原位测量很好地吻合。还评估了基于表面钻孔传统标准光谱比(SSR)和表面对钻孔响应光谱比(RSR)和交叉光谱比(C-SSR)的钻孔扩增。基于C-SSR,我们将钻孔放大为1.35Hz(0.74秒)的钻孔放大,接近土柱的主要频率。

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