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首页> 外文期刊>Journal of Seismology >Imaging a shallow salt diapir using ambient seismic vibrations beneath the densely built-up city area of Hamburg, Northern Germany
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Imaging a shallow salt diapir using ambient seismic vibrations beneath the densely built-up city area of Hamburg, Northern Germany

机译:利用周围的地震振动,在德国北部汉堡密集的市区下为浅层盐底辟成像

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摘要

Salt diapirs are common features of sedimentary basins. If close to the surface, they can bear a significant hazard due to possible dissolution sinkholes, karst formation and collapse dolines or their influence on ground water chemistry. We investigate the potential of ambient vibration techniques to map the 3-D roof morphology of shallow salt diapirs. Horizontal-to-vertical (H/V) spectral peaks are derived at more than 900 positions above a shallow diapir beneath the city area of Hamburg, Germany, and are used to infer the depth of the first strong impedance contrast. In addition, 15 small-scale array measurements are conducted at different positions in order to compute frequency-dependent phase velocities of Rayleigh waves between 0.5 and 25 Hz. The dispersion curves are inverted together with the H/V peak frequency to obtain shear-wave velocity profiles. Additionally, we compare the morphology derived from H/V and array measurements to borehole lithology and a gravity-based 3-D model of the salt diapir. Both methods give consistent results in agreement with major features indicated by the independent data. An important result is that H/V and array measurements are better suited to identify weathered gypsum caprocks or gypsum floaters, while gravity-derived models better sample the interface between sediments and homogeneous salt. We further investigate qualitatively the influence of the 3-D subsurface topography of the salt diapir on the validity of local 1-D inversion results from ambient vibration dispersion curve inversion.
机译:盐底盘是沉积盆地的共同特征。如果靠近地表,它们可能会遭受严重的危害,这可能是由于可能的溶蚀陷井,岩溶形成和崩塌的漏斗或它们对地下水化学的影响。我们调查环境振动技术的潜力,以绘制浅盐底盘的3-D屋顶形态。水平/垂直(H / V)频谱峰值是在德国汉堡市区下方的浅水底之上的900多个位置得出的,用于推断第一个强阻抗对比的深度。另外,在不同位置进行15次小规模阵列测量,以计算0.5至25 Hz之间瑞利波的频率相关相位速度。色散曲线与H / V峰值频率一起反转,以获得剪切波速度曲线。此外,我们比较了从H / V和阵列测量得出的形态,以井眼岩性和盐重力为基础的3-D模型。两种方法都给出一致的结果,与独立数据表明的主要特征一致。一个重要的结果是,H / V和阵列测量更适合于识别风化的石膏盖层或石膏漂浮物,而重力衍生的模型则更好地对沉积物与均质盐之间的界面进行采样。我们进一步定性研究盐底辟的3-D地下地形对环境振动弥散曲线反演对局部一维反演结果的有效性的影响。

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