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Imaging the active faults with ambient noise passive seismics and its application to characterize the Huangzhuang-Gaoliying fault in Beijing Area, northern China

机译:与环境噪声无源地震器成像的积极故障及其应用,以北方北京地区黄庄高校故障

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Most serious geotechnical problems related to rock engineering are generated by the existence of faults. Detection of fault (especially active faults) is the first step to conduct any further in-depth studies in faulted rock mass or rock blocks. In this paper, we investigated the plausibility to image fault zones by passive seismic surveys using recorded ambient noise. The test site is in the north suburb of Beijing, northern China along the south bank of the northwest-southeast running Wenyuhe River, where the NNE-striking Huangzhuang-Gaoliying fault (HGF, active in the Holocene) is crossing. In general, the results are in good agreement with previous studies using active source seismics conducted in this area along the HGF and existing borehole drillings in the vicinity. Undoubtedly, Active source seismic reflection technique is the best technique to image fault in depth with high resolution. The drawback is its high cost and the necessity of using explosives, a practice usually prohibited in urban settings. In contrast, passive seismic surveys take the advantage of the ever-existing ambient noise source, and provide a low-cost technique, and fast deployment that can locate the fault effectively. Though the imaging resolution is lower compared to those obtained by active source seismic surveys, our passive seismic experiment at the Wenyuhe River site demonstrated that this approach is effective, especially for those faults with significant normal faulting component and the stratigraphy is significantly different on the two sides crossing the fault line.
机译:与岩石工程相关的最严重的岩土问题是由存在的存在产生的。故障检测(特别是有源故障)是在断层岩体或岩石块中进行任何进一步深入研究的第一步。在本文中,我们通过使用记录的环境噪声来调查通过被动地震调查来对图像故障区的合理性。该试验网站位于北京北郊,中国北部沿着南北南岸,沿着文宇河的西北部河流,在那里的NNE引人注目的黄庄高音故障(HGF,积极在全新世)横穿。通常,结果与先前的研究沿着HGF和附近的现有钻孔钻井在该区域中进行的主动源地震学的研究吻合良好。无疑,主动源地震反射技术是以高分辨率高度图像故障的最佳技术。缺点是它的高成本和使用爆炸物的必要性,通常禁止城市环境中的练习。相比之下,被动地震调查采取了现有的环境噪声源的优点,并提供了低成本的技术,以及可以有效地定位故障的快速部署。虽然成像分辨率与通过主动源地震调查获得的成像分辨率较低,但我们在Wenyuhe River Rivity的被动地震实验证明了这种方法是有效的,特别是对于那些具有显着正常断层部件的故障,而且标志性在两者上显着不同边缘过错线。

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