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首页> 外文期刊>Journal of Engineering Research >Introductory review of potential applications of nanoseismic monitoring in seismic energy characterization
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Introductory review of potential applications of nanoseismic monitoring in seismic energy characterization

机译:纳米地震监测在地震能量表征中的潜在应用简介

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Major terrestrial hazards are associated with the formation of fractures that evolve with time and lead to structural collapse. The fracture singles emitted in response to stress accumulation and its release if properly understood, provide sound background for the development of Early Warning Systems (EWSs). Different attempts have been made in the past for t heir proper understanding, but in this study Nanoseismic (NS) monitoring is being discussed, in term of its sensors employment and signal processing modules . NS is a method dedicated to the detection, localization and characterization of very low seismic energies (Ml1) at short distances (10 km). Data are acquired by small aperture (max 200m) seismic arrays that are easy to install and consist of one central three component (3C) sensor surrounded by three vertical one component (1C) sensors in a tripartite layout that are suited for the beam forming processing. Detection and location of weak events (Ml1) are done by a dedicated software: the NanoseismicSuite, which was developed at Stuttgart University, Germany. The signals are processed by sonograms ( i.e. spectrograms with a frequency - dependent noise adaptation). The sonograms enhance the display of weak signal energy down to the noise threshold and allow supervised pattern recognition of weak target events in the frequency domain. Locations of weak events are supported by a graphical jackknifing approach. The case studies have shown that NM can successfully detect various weak fracture signals induced by the (stress relief mechanisms of near-surface geoprocesses) landsliding (LS) dynamic, structural health, hydraulic fracturing, erosional features, pre-mature sinkholes, pending rockfall and microseismicity associated with active faults.
机译:重大的陆地危害与裂缝的形成有关,裂缝的形成随时间而发展,并导致结构塌陷。如果适当理解,响应应力积累及其释放而发出的裂缝单发为早期预警系统(EWS)的开发提供了良好的背景。过去已经进行了不同的尝试来获得对它们的正确理解,但是在这项研究中,就其传感器使用和信号处理模块而言,正在讨论纳米地震(NS)监视。 NS是专用于在短距离(<10 km)处检测,定位和表征极低地震能量(M1 <1)的方法。通过易于安装的小孔径(最大200m)地震阵列获取数据,该阵列由一个中央三分量(3C)传感器和三个垂直的一个分量(1C)传感器围绕,构成三方布局,适合于波束成形处理。弱事件(M1 <1)的检测和定位通过专用软件:NanoseismicSuite(由德国斯图加特大学开发)完成。信号由超声图处理(即具有与频率相关的噪声适应性的频谱图)。超声图可将微弱的信号能量显示降低到噪声阈值,并允许在频域中对弱目标事件进行监督模式识别。弱事件的位置由图形叠加方法支持。案例研究表明,NM可以成功检测到由(近地表地质过程的应力释放机制)滑坡(LS)动力学,结构健康,水力压裂,侵蚀特征,过早塌陷,未决落石和与活动断层有关的微地震。

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