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首页> 外文期刊>GSA Bulletin >Seismicity, seismic reflection studies, gravity and geology of the central Virginia seismic zone: Part I. Seismicity
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Seismicity, seismic reflection studies, gravity and geology of the central Virginia seismic zone: Part I. Seismicity

机译:弗吉尼亚中部地震带的地震活动,地震反射研究,重力和地质:第一部分。地震活动

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摘要

The central Virginia seismic zone is an area of persistent, low-level seismicity in the Piedmont province of that state. Its north-south dimension is 120 km, and it extends some 150 km in an east-west direction from Richmond to Lynchburg. The results of instrumental monitoring there by a seismic network during the past 5 yr are reported herein. To provide a useful constraint on geologic structural models, considerable care must be exercised in the location of earthquakes and in the specification of the accuracy of those locations. Our procedures for accomplishing those tasks were as follows. First, a velocity model, specific to the network locale, was developed from seismic-refraction and reflection data. Second, evaluation of the detection capability of the network indicated that the detection of seismic events should be virtually complete down to a magnitude of 1.5. Third, the locational capability of the network was assessed by locating blasts (originating from three different quarries operating within the network area) as if they were earthquakes of unknown location. The average calculated locations, when compared to the known blast sites, indicated average differences of ±2 km horizontally and ±4 km vertically, except for the northeastern portion. There, the location capability degrades to fair for epicenters (±4 km) and to poor for estimation of focal depths (±8 km). The resultant decrease in locational capability is probably due to the presence of low-velocity Coastal Plain sediments. Fourth, the location of all of the earthquakes, relative to each other, was tested by use of special, joint-hypocenter calculations. The recalculated locations differed from the original locations in a random manner. On the average, that difference was 3 km, and it indicates the absence of serious bias introduced by combining earthquake locations derived from different subnetworks of seismographs. Ninety-six pre-network (pre-1978) earthquakes (for the most part, felt events with noninstrumental locations) and 34 network-determined hypocenters (1978–1982) (for mostly smaller, not-felt shocks) form the basic data set of this study. The spatial distribution exhibited by the 130 hypocenters is diffuse, both vertically and horizontally. Such a pattern favors multiple, rather than singular, seismogenic structures. Seventy-five percent of the focal depths are in the upper one-third of the crust, at depths of 11 km or less. These multiple, shallow sources will be shown, in Part 4 of this sequence of papers, to be along and above a master detachment fault.
机译:弗吉尼亚州中部地震带是该州皮埃蒙特省持续性的 低度地震活动区。 其南北向为120 km,延伸了一些从里士满到林奇堡,东西向为150 km。本文报告了过去5年中通过地震网络 在该处进行仪器监测的结果。 为了对地质构造模型提供有用的约束, 在地震位置和这些位置的精度规范中必须格外小心。 我们完成这些任务的程序是 首先,根据地震折射和反射数据 建立了特定于网络区域的速度模型。其次,对网络检测能力的 评估表明, 地震事件的检测实际上应该完全完成, 降至1.5级。第三,通过定位爆炸(来自网络区域内运行的三个不同采石场的爆炸 )来评估网络的位置能力 ,就像它们是未知地点的地震。与已知爆炸地点相比,平均 计算位置, 指示水平±2 km和垂直 ±4 km的平均差,除了东北地区。 在那里,定位能力对于震中 (±4 km)而言是公平的,而对焦深的估计(±8 公里)。由于存在低速沿海平原沉积物,导致定位能力的下降可能是 。第四,相对于 < / sup>彼此之间通过特殊的联合震源计算进行了测试。 重新计算的位置与原始位置 随机不同。平均而言,该差异为3 km, ,这表明没有合并来自不同地震仪子网的 地震位置引入的严重偏差。 九十六次网络前地震(1978年之前)(对于大多数 部分,非仪器位置的有感事件)和34个网络确定的 震源(1978–1982年) (对于大多数较小的,感觉不到的冲击)构成了本研究的基本数据集。 130个震源所表现出的空间分布 在垂直方向 和水平方向都是分散的。这种模式有利于多个而不是 奇异的震源结构。 震源深度的百分之七十五在地壳的上三分之一中,深度 小于或等于11 km。这些多重浅层源将在本论文系列的第4部分中显示为 ,且位于主脱离断层的 之上。

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  • 来源
    《GSA Bulletin》 |1985年第1期|49-57|共9页
  • 作者

    G. A. BOLLINGER; M. S. SIBOL;

  • 作者单位

    Seismological Observatory, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061;

    Seismological Observatory, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061;

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  • 正文语种 eng
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