首页> 外文期刊>Journal of Volcanology and seismology >Seismic Microzonation and Assessment of Earthquake Hazard for the Construction Sites of Sea-Based Facilities in Low Seismicity Water Areas
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Seismic Microzonation and Assessment of Earthquake Hazard for the Construction Sites of Sea-Based Facilities in Low Seismicity Water Areas

机译:低地震水域海基设施施工现场的地震微区划与地震危险性评估

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This paper reports the results from a study on earthquake hazard assessment for the northwesternpart (until now considered to have been a low seismicity area) of the northern Caspian Sea around MorskoiIvan-Karaul Island where oil-producing facilities are to be built. This earthquake hazard assessment is based onthe traditional approach by analysis and summary of geological and geophysical data (primarily fault tectonicsand geophysical fields). Seismic microzonation was carried out by the dynamic method based on the comparisonof ground motion spectral amplitudes at a reference site and at other sites in the water area of interest. The basicdata were records of aftershocks of teleseismic events made by OBSs. The experiment in dynamic microzonationturned out to be unique, in the sense that it was conducted in very shallow water (1-5 m), where the level ofseismic noise is affected, not only by currents, but also by sea waves. We stress the importance of seismicmonitoring during the operation period of the oil-gas facilities to provide checks on the technological processand to ensure the ecological safety of the environment.
机译:本文报告了对里海北部西北部(直到现在被认为是低地震度地区)地震危险性评估研究的结果,该地区拟建产油设施,位于MorskoiIvan-Karaul岛周围。这次地震灾害评估是基于传统方法,对地质和地球物理数据(主要是断层构造学和地球物理场)进行分析和总结。地震微区划分是通过动态方法进行的,该方法基于比较目标水域中参考站点和其他站点的地面运动谱振幅。基本数据是OBS进行的地震事件余震记录。动态微区划实验是独特的,因为它是在非常浅的水域(1-5 m)中进行的,在该区域中,地震噪声的水平不仅受到洋流的影响,还受到海浪的影响。我们强调在油气设施运营期间进行地震监测的重要性,以便对工艺过程进行检查并确保环境的生态安全。

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