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S-Wave Velocity Structure of the Taiwan Chelungpu Fault Drilling Project (TCDP) Site Using Microtremor Array Measurements

机译:利用微震阵列测量技术对台湾棋山浦断层钻探项目(TCDP)站点的S波速度结构

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The Taiwan Chelungpu Fault Drilling Project (TCDP) drilled a 2-km-deep hole 2.4 km east of the surface rupture of the 1999 Chi-Chi earthquake (M (w) 7.6), near the town of Dakeng. Geophysical well logs at the TCDP site were run over depths ranging from 500 to 1,900 m to obtain the physical properties of the fault zones and adjacent damage zones. These data provide good reference material for examining the validity of velocity structures using microtremor array measurement; therefore, we conduct array measurements for a total of four arrays at two sites near the TCDP drilling sites. The phase velocities at frequencies of 0.2-5 Hz are calculated using the frequency-wavenumber (f-k) spectrum method. Then the S-wave velocity structures are estimated by employing surface wave inversion techniques. The S-wave velocity from the differential inversion technique gradually increases from 1.52 to 2.22 km/s at depths between 585 and 1,710 m. This result is similar to those from the velocity logs, which range from 1.4 km/s at a depth of 597 m to 2.98 km/s at a depth of 1,705 m. The stochastic inversion results are similar to those from the seismic reflection methods and the lithostratigraphy of TCDP-A borehole, comparatively. These results show that microtremor array measurement provides a good tool for estimating deep S-wave velocity structure.
机译:台湾Chelungpu断层钻探项目(TCDP)在大坑镇附近的1999年集集地震(M(w)7.6)地表破裂以东2.4 km处钻了一个2 km深的孔。 TCDP站点的地球物理测井深度超过500至1,900 m,以获得断层带和邻近破坏带的物理特性。这些数据为利用微震阵列测量研究速度结构的有效性提供了很好的参考资料。因此,我们在TCDP钻井地点附近的两个地点对总共四个阵列进行阵列测量。使用频率-波数(f-k)频谱法计算0.2-5 Hz频率处的相速度。然后利用面波反演技术估算出S波速度结构。来自差分反演技术的S波速度在585至1,710 m的深度处从1.52逐渐增加到2.22 km / s。该结果与速度测井结果相似,在597 m深度处为1.4 km / s,在1,705 m深度处为2.98 km / s。相对而言,随机反演结果与地震反射法和TCDP-A井眼岩石地层学结果相似。这些结果表明,微震阵列测量为估算深部S波速度结构提供了一个很好的工具。

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