Integrated Geophysical-Geological 3D Model of the Right-Bank Slope Downstream from the Rogun Dam Construction Site, Tajikistan

IF 1 Q3 GEOCHEMISTRY & GEOPHYSICS International Journal of Geophysics Pub Date : 2018-08-27 DOI:10.1155/2018/1641789
H. Havenith, I. Torgoev, A. Ischuk
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引用次数: 10

Abstract

In summer of 2015 we had completed a geophysical survey complemented by borehole drilling near the right-bank slope of the Rogun Dam construction site, Tajikistan. These data were first processed and then compiled within a 3D geomodel. The present paper describes the geophysical results and the 3D geomodel generated for an ancient mass movement located immediately downstream from the construction site. The geophysical survey included electrical and seismic profiles and ambient vibration measurements as well as earthquake recordings. The electrical and seismic data were processed as tomographic sections, the ambient vibrations as horizontal-to-vertical spectral H/V ratios, and the earthquake data mainly in terms of standard spectral ratios. By estimating the average shear wave velocities of the subsurface, we computed the local soft layer thickness from the resonance frequencies revealed by the H/V ratios. Three seismic stations had been installed for ten days along a profile crossing the intermediate plateau. Standard spectral ratios inferred from ten processed earthquake measurements confirmed the presence of a thick soft material layer on the plateau made of weathered rocks, colluvium, and terrace deposits, which produce a medium-level amplification at about 2 Hz. The 3D geomodel was first built on the basis of new topographic data, satellite imagery, and a geological map with two sections. Then, the various electrical resistivity and seismic refraction tomographies were inserted in the geomodel. The soft layer thickness information and borehole data were represented in terms of logs in the model. The site is crossed by the Ionakhsh Fault that could be modeled on the basis of the geological inputs and of a lateral resistivity gradient found on one electrical profile along the steep lower slope. The integrated interpretation of all results reveals that probably only a relatively small part of the ancient giant mass movement is really exposed to slope instability phenomena.
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塔吉克斯坦罗贡大坝施工现场右岸下游边坡综合地球物理地质三维模型
2015年夏天,我们在塔吉克斯坦Rogun大坝建设工地右岸斜坡附近完成了地球物理调查,并进行了钻孔钻探。这些数据首先被处理,然后被编译成一个三维的地理模型。本文描述了位于建筑工地下游的古代地块运动的地球物理结果和三维地质模型。地球物理调查包括电气和地震剖面、环境振动测量以及地震记录。电、地震数据采用层析剖面处理,环境振动数据采用水平-垂直频谱H/V比处理,地震数据主要采用标准频谱比处理。通过估计地下平均横波速度,根据H/V比显示的共振频率计算出局部软层厚度。在穿过中间高原的剖面上安装了三个地震台站,历时10天。从10次处理过的地震测量中推断出的标准光谱比证实,在高原上存在一层由风化岩石、塌积层和阶地沉积物组成的厚软物质层,它产生约2赫兹的中等水平放大。三维地质模型首先建立在新的地形数据、卫星图像和地质地图的基础上,其中包括两个部分。然后,将各种电阻率和地震折射层析成像插入到地质模型中。软层厚度信息和钻孔数据在模型中以测井曲线表示。该地点被Ionakhsh断层穿过,该断层可以根据地质输入和沿陡峭的较低斜坡在一条电剖面上发现的横向电阻率梯度进行建模。综合所有结果的解释表明,可能只有相对较小的一部分古代巨型岩体运动真正暴露于边坡失稳现象。
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来源期刊
International Journal of Geophysics
International Journal of Geophysics GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.50
自引率
0.00%
发文量
12
审稿时长
21 weeks
期刊介绍: International Journal of Geophysics is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of theoretical, observational, applied, and computational geophysics.
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