首页> 外文会议>Geothermal Resources Council annual meeting 2009 >High Resolution Seismic Velocity Structure in the Reno Basin from Ambient Noise Recorded by a Variety of Seismic Instruments
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High Resolution Seismic Velocity Structure in the Reno Basin from Ambient Noise Recorded by a Variety of Seismic Instruments

机译:来自各种地震仪器记录的环境噪声的里诺盆地高分辨率地震波速度结构

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Geothermal prospects may be located in regions characterized by low seismic activity, thus leading to difficulty in estimation of an accurate seismic velocity model. Estimation of velocity models in the upper 5 km of the crust using ambient noise is an inexpensive alternative to active experiments. In the Reno Basin, we are testing a transportable and cost-effective ambient seismic noise processing methodology (when compared to active source experiments) to estimate a high resolution shallow seismic velocity model.rnA gap exists for demonstrated extraction of Green's Functions (with Rayleigh waves as the most prominent arrivals) from ambient noise between short and long inter-station distances. In other words, noise-extracted Rayleigh waves are currently sampling less than 0.2 km from the surface, or more than 10 km deep. Also, recent studies demonstrate that ambient noise is effective in exploration seismology for retrieving first-arrival reflections. However, this possibility was not yet demonstrated for inter-station distance larger than several tens on meters. We investigate the possibility of extraction of first arrival reflections and of surface waves from ambient noise Green's Functions (GF's). For this purpose, we use a variety of available instruments in a 60 km × 60 km area in the Reno Basin and innovative adaptations of array and network signal processing techniques.rnWe investigate recovery of GF's from ambient noise for pairs of different instruments: 1) digital narrow-band seismometer recordings (for instance, S-13 seismometer), 2) analog narrow-band seismometer recordings, digitized after transmission, 3) digital accelerometer recordings; 4) digital broadband instruments, including USArray stations and 5) seismic exploration geophones. Each of these instrument classes presents its own problems for GF recovery and requires appropriate processing. We have developed cross-correlation software to take advantage of all types of instruments in our recording archive and thus enlarge the number of paths for which GF's can be recovered. With a set of traditional inversion programs, we invert the Green's functions for seismic velocity structure in the Reno Basin.
机译:地热远景可能位于地震活动低的区域,因此导致难以估算准确的地震速度模型。使用环境噪声估算地壳上部5 km的速度模型是进行主动实验的一种廉价方法。在里诺盆地,我们正在测试一种可运输且具有成本效益的环境地震噪声处理方法(与有源震源实验相比),以估算高分辨率的浅层地震速度模型。rnA存在间隙以证明格林函数的提取(利用瑞利波)作为最显着的到达)来自站点间短距离和长距离之间的环境噪声。换句话说,从噪声中提取的瑞利波目前在距地面不到0.2 km或深于10 km的地方采样。另外,最近的研究表明,环境噪声在勘探地震学中用于检索初到反射是有效的。但是,对于站间距离大于几十米的情况,这种可能性尚未得到证实。我们研究了从环境噪声格林函数(GF's)中提取首次到达反射和表面波的可能性。为此,我们在里诺盆地60 km×60 km的区域中使用了各种可用的仪器,并对阵列和网络信号处理技术进行了创新的调整.rn我们研究了针对不同仪器对从环境噪声中回收GF的情况:1)数字窄带地震仪记录(例如,S-13地震仪),2)模拟窄带地震仪记录,传输后数字化,3)数字加速度计记录; 4)数字宽带仪器,包括USArray电台,以及5)地震勘探地震检波器。这些工具类别中的每一个都为GF回收带来了自己的问题,需要适当的处理。我们开发了互相关软件,以利用我们记录档案中的所有类型的乐器,从而扩大可以恢复GF的路径的数量。通过一套传统的反演程序,我们将格林函数用于里诺盆地地震速度结构上。

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