首页> 外文学位 >Station delays, their standard deviations, and event relocations in the Reno-area basin from a dense USArray flexible array deployment during the 2008 west Reno earthquake swarm.
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Station delays, their standard deviations, and event relocations in the Reno-area basin from a dense USArray flexible array deployment during the 2008 west Reno earthquake swarm.

机译:在2008年里诺西部地震群期间,由于密集的USArray柔性阵列部署,里诺地区盆地的台站延误,标准偏差和事件重新定位。

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摘要

The seismic hazard of a sedimentary basin is high. The basin depth and its geometry control the amplification of ground motion. So from the point of earthquake hazard, it is important to know the basin geometry and its depth for the hazard evaluation of an area. Knowing the basin geometry and depth and velocity of sediments will enhance our understanding of ground amplification to improve seismic hazard evaluations. In this context, to evaluate the seismic hazard of the Reno Basin, the Nevada Seismological Laboratory (NSL) conducted a citizen volunteer Reno Basin multiple instrument temporary deployment using USArray Flexible Array single-channel RefTek RT-125A (Texan) recorders. Stations were deployed at 106 locations in the Reno Basin during the May-July 2008 period of the 2008 west urban Reno Mogul earthquake swarm. This was a very dense deployment as the basin only occupies about 150 square kilometers. The Flexible Array deployment supplemented recordings from 46 NSL/ANSS regional network stations, Reno area strong-motion, and 12 IRIS RAMP stations. This allowed relocation of 97 events in the West Reno/Mogul sequence during May-July 2008, using phase arrivals on all network and volunteer Texan stations. Hypoinverse runs showed no less location error with added Texans, but visually, the events are drawn into tighter clusters. An average station delay map, a mode-of-station-delay map, and a map of the standard deviations of the average station delays confirm that the western part of the basin is thickest. Negative delays and high standard deviations in delay times in the Verdi Basin confirmed the basin to be narrow and complex.
机译:沉积盆地的地震危险性很高。盆地深度及其几何形状控制着地震动的放大。因此,从地震灾害的角度出发,了解盆地的几何形状及其深度对于区域灾害评估至关重要。了解盆地的几何形状以及沉积物的深度和速度将增进我们对地面放大的理解,从而改善地震危险性评估。在这种情况下,为了评估里诺盆地的地震危险,内华达州地震实验室(NSL)使用USArray柔性阵列单通道RefTek RT-125A(Texan)记录仪进行了一项由公民自愿组成的里诺盆地多台仪器的临时部署。在2008年西部城市里诺莫古尔地震群的2008年5月至7月期间,在里诺盆地的106个地点部署了测站。这是一个非常密集的部署,因为该盆地仅占约150平方公里。灵活阵列部署补充了来自46个NSL / ANSS区域网络站点,里诺地区强运动和12个IRIS RAMP站点的记录。这允许在2008年5月至7月期间按西里诺/莫卧儿山脉的顺序重新部署97个事件,所有网络和德克萨斯州志愿人员站都分阶段到达。次反向运行在添加德州人的情况下没有显示出更少的位置错误,但是在视觉上,事件被吸引到更紧密的簇中。平均台站延迟图,台站延迟模式图和平均台站延迟的标准偏差图确认了盆地西部最厚。威尔第盆地的负延迟和延迟时间的高标准偏差证实该盆地狭窄而复杂。

著录项

  • 作者

    Dhar, Mahesh Singh.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Geophysics.
  • 学位 M.S.
  • 年度 2010
  • 页码 63 p.
  • 总页数 63
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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