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A Revised Interpretation of 3D Seismic Data, Hawthorne Army Depot, Nevada: Faulted-Basin Reflections or Sill Intrusions?

机译:修订后的3D地震数据,霍桑陆军仓库,内华达州:盆地反射或门槛入侵?

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The Walker Lake Domain (WLD) of the Walker Lane contains the dextral strike-slip faults characteristic of the Walker Lane but also includes N-NNW striking normal range-front faults, the primary controls on geothermal systems in Nevada according to Surpless and Faulds. A 3D seismic reflection survey collected in 2001 by the Navy Geothermal Programs Office near Hawthorne, Nevada within the WLD reveals strong east-dipping reflectors intersected by strong synclinal reflection bands previously interpreted as migration artifacts. Similarities of these reflections to sill intrusions revealed in the North Sea by Thomson & Hutton have guided a reinterpretation of sill intrusions or lopoliths within the range-front faulted zone, as mapped in other WLD ranges by Valentine & Krogh. Stress models suggest that as magma intrudes, it becomes suspended at its level of neutral buoyancy but then can migrate up the normal fault forming structures similar to features within the 3D Navy data. Characteristics for sill intrusions present within these data include strong cohesive reflections that abruptly stop and uplifted sediments above bowl-like anticlines. However, no well data exist yet to correlate these features. Dip calculations based on a range of possible velocity models reveal a 22- to 40-degree dip range on the range-front normal fault. This 3D survey provides a rare opportunity to examine characteristics of possible sill intrusions within the Great Basin that have no surface exposure, as well as characteristics of Great Basin range-front faults.
机译:Walker Lane的Walker Lake域(WLD)包含沃克通道的右旋滑动故障,而且包括N-NNW醒目的正常范围故障,根据无障碍和Faulds,内华达地热系统的主要控制。在2001年由海军地热课程办公室收集的3D地震反射调查,在霍桑,内华达州内华达州内华达州内华达州内华达州揭示了以前被解释为迁移工件的强赤型反射频段的强烈东浸反射器。汤姆森和胡顿在北海揭示了这些思考对山脉入侵的相似之处揭示了范围内断线区内的门槛入侵或隆泊,如情人节&krogh的其他WLD范围内的映射。压力模型表明,作为岩浆入侵,它会暂停其中性浮力水平,但随后可以迁移到类似于3D海军数据内的功能的正常故障形成结构。这些数据内存在的窗口入侵的特征包括强大的粘性反射,突然停止并抬起碗状背斜的沉积物。但是,尚未存在井数据以与这些功能相关联。基于一系列可能的速度模型的DIP计算显示了在正常正常故障上的22至40度的DIP范围内。该3D调查提供了一种难以理解的机会,可以在没有表面曝光的大盆地内检查可能的门槛入侵的特征,以及较大的盆地范围前断层的特性。

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