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首页> 外文期刊>GSA Bulletin >Tectonics of the Intermountain Seismic Belt, Western United States: Microearthquake Seismicity and Composite Fault Plane Solutions
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Tectonics of the Intermountain Seismic Belt, Western United States: Microearthquake Seismicity and Composite Fault Plane Solutions

机译:美国西部山间地震带构造:微地震和复合断层平面解

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摘要

During the summer of 1969, six portable seismographs were operated at 82 sites along the Intermountain Seismic Belt from southwestern Utah to northwestern Montana. This survey followed a well-known seismic belt along the eastern physiographic boundary of the Basin and Range province, and within the middle and northern Rocky Mountains. In general, the 120 microearthquakes located in this study follow the same spatial trend as the macroseismic earthquakes reported by the NOS (formerly USCGS). Most of the micro-earthquakes clustered in time and space along well-known fault zones on which late Tertiary or younger movements have occurred. All of the accurately located hypocenters occurred between the surface and a 20 km depth. Composite fault plane solutions along the Hurricane and Sevier fault zones (southwestern Utah), Tushar and Sevier fault zones (Marysvale area, Utah), and Wasatch and East Cache fault zones in central and northern Utah indicate vertical-motion on steeply dipping fault planes. These motions may be indicative of differential movements between the Basin and Range province and the Colorado Plateau-Rocky Mountains. Composite fault plane solutions (CFPS) in the Caribou Mountains, southeastern Idaho, and Flathead Lake area, northwestern Montana, show normal faulting on less steeply dipping planes and have west-northwest trending extensional axes. Swarm activity was also observed in the above two regions. Between the above two areas of uplift and extension lies a region of complicated geology and seismicity.
机译:1969年夏天,从犹他州西南部到犹他州西南部的蒙大拿州,沿山间地震带的82个地点操作了6台便携式地震仪。这项调查遵循了沿 Basin and Range省东部地貌边界以及在 落基山脉中部和北部的一条著名的 地震带。 。通常,本研究中位于 的120个微地震遵循的空间趋势与NOS(以前称为USCGS)报告的大地震 地震相同。大多数 微地震在时间和空间上聚集在著名的 断层带上,在这些断层上发生了第三纪晚期或更年轻的运动。所有精确定位的震源都在表面和20 km深度之间发生 。沿飓风和塞维尔断裂带(西南 犹他州),杜沙尔和塞维尔断裂带(犹他州马里斯维尔地区), 和犹他州中部和北部的Wasatch和East Cache断层带指示陡峭倾斜断层平面上的垂直运动。 这些运动可能表示 盆地和山脉省以及科罗拉多高原洛奇山脉(sup> Mountains)。在爱达荷州东南部的北美洲驯鹿山和蒙大拿州西北部的弗拉特黑德湖地区的复合断层平面解决方案(CFPS)显示出在倾角较小的平面上的正常断层 ,并具有西北偏北趋势的延伸轴。在上述两个区域也观察到了群体活动 。在上述 隆起和伸展的两个区域之间是一个复杂的 地质和地震活动性区域。

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  • 来源
    《GSA Bulletin》 |1972年第1期|13-28|共16页
  • 作者单位

    Lamont-Doherty Geological Observatory of Columbia University, Palisades, New York 10964 Department of Geological and Geophysical Sciences, University of Utah, Salt Lake City, Utah 84112;

    Lamont-Doherty Geological Observatory of Columbia University, Palisades, New York 10964 Department of Geological and Geophysical Sciences, University of Utah, Salt Lake City, Utah 84112;

    Lamont-Doherty Geological Observatory of Columbia University, Palisades, New York 10964 Department of Geological and Geophysical Sciences, University of Utah, Salt Lake City, Utah 84112;

    Lamont-Doherty Geological Observatory of Columbia University, Palisades, New York 10964 Department of Geological and Geophysical Sciences, University of Utah, Salt Lake City, Utah 84112;

    Lamont-Doherty Geological Observatory of Columbia University, Palisades, New York 10964 Department of Geological and Geophysical Sciences, University of Utah, Salt Lake City, Utah 84112;

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