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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Weathering front under a granite ridge revealed through full-3D seismic ambient-noise tomography
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Weathering front under a granite ridge revealed through full-3D seismic ambient-noise tomography

机译:通过全3D地震环境噪声断层扫描揭示了花岗岩山脊下的风化前线

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摘要

Seismic tomography, when calibrated with borehole data, can be a highly effective tool for investigating the deep structure of the critical zone. In this study, we have successfully applied seismic adjoint tomography to obtain a fully three-dimensional shear-wave velocity model under a granitic ridge in the Blair-Wallis watershed, southeastern Wyoming. The seismic data used in our tomography are ambient noise Green's functions obtained from a minimally invasive, "large-N" seismic survey using a square array of 400 autonomous geophones. Lateral variations of our 3D shear-wave velocity model show strong correlations with surface topography. Depth variations of our velocity model may give clues about the depth interval within which chemical weathering plays a significant role. With the calibration of borehole casing depths and saprolite refusal depths, we selected the isosurface of shear-wave velocity 491 m/s as the interface between highly chemically weathered saprolite and fractured bedrocks, which we use to represent the weathering front in this study. Large-scale spatial variations of the weathering front are consistent with groundwater table, which provides observational support to a recently proposed hypothesis that subsurface weathering is mainly driven by bedrock drainage of chemically equilibrated water. Small-scale spatial variations of the weathering front calls for more sophisticated mechanisms that couple the effect of top-down infiltration of reactive meteoric water with the influence of pre-existing fractures. (C) 2019 Elsevier B.V. All rights reserved.
机译:地震层析,当与钻孔数据校准,可用于研究临界区的深层结构的高度有效手段。在这项研究中,我们已经成功地应用于地震伴随断层扫描,以获得在布莱尔 - 沃利斯一个花岗岩山脊下的全三维横波速度模型流域,怀俄明州东南部。在我们的断层摄影中使用的地震数据是使用正方形阵列的400个自主从地震检波器微创“大-N”地震勘测获得的环境噪声的格林函数。我们的3D剪切波速模型的横向变化示出了具有表面形貌的强相关性。我们的速度模型的深度的变化,可以让我们在其中的化学风化起着显著作用的深度间隔线索。与井眼套管的深度和腐泥土拒绝深度的校准,我们选择横波速度的等值面491米/ S作为高度化学风化腐泥土和断裂基岩,我们用它来表示风化前在本研究之间的接口。风化前的大型空间变化与地下水位,这在最近提出的假说,即地下风化主要由化学平衡水的基岩排水从动提供观测支持一致。对于更复杂的机制,风化前呼叫的小规模的空间变化的是耦合的反应性大气水自上而下浸润与预先存在的裂缝的影响的效果。 (c)2019 Elsevier B.v.保留所有权利。

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