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Structural Controls on Geothermal Circulation in Surprise Valley, California: A Re-evaluation of the Lake City Fault Zone

机译:加利福尼亚州瑟格谷地热循环的结构控制:对湖城断层带的重新评估

摘要

Faults and fractures play an important role in the circulation of geothermal fluids in the crust, and the nature of that role varies according to structural setting and state of stress. As a result, detailed geologic and geophysical mapping that relates thermal springs to known structural features is essential to modeling geothermal systems. Published maps of Surprise Valley in northeastern California suggest that the u22Lake City faultu22 or u22Lake City fault zoneu22 is a significant structural feature, cutting obliquely across the basin and connecting thermal springs across the valley. Newly acquired geophysical data (audio-magnetotelluric, gravity, and magnetic), combined with existing geochemical and geological data, suggest otherwise. We examine potential field profiles and resistivity models that cross the mapped Lake City fault zone. While there are numerous geophysical anomalies that suggest subsurface structures, they mostly do not coincide with the mapped traces of the Lake City fault zone, nor do they show a consistent signature in gravity, magnetics, or resistivities that would suggest a through-going fault that would promote connectivity through lateral fluid flow. Instead of a single, continuous fault, we propose the presence of a deformation zone associated with the growth of the range-front Surprise Valley fault. The implication for geothermal circulation is that this is a zone of enhanced porosity but lacks length-wise connectivity that could conduct fluids across the valley. Thermal fluid circulation is most likely controlled primarily by interactions between N-S–trending normal faults.
机译:断层和裂缝在地壳中地热流体的循环中起着重要作用,其作用的性质根据结构和应力状态而变化。结果,将热弹簧与已知结构特征相关联的详细地质和地球物理映射对于建模地热系统至关重要。已发布的加利福尼亚州东北部惊喜谷地图表明, L22城市断层或 L22城市断层带 u22是一个重要的构造特征,斜切开整个盆地,并连接整个山谷的温泉。新近获得的地球物理数据(音频,大地电磁,重力和磁性)与现有的地球化学和地质数据相结合,则表明存在其他问题。我们研究了穿越绘制的莱克城断层带的势场剖面和电阻率模型。尽管有许多地球物理异常表明地下结构,但它们大多与湖市断裂带的地图迹不重合,也没有在重力,磁学或电阻率上显示出一致的特征,这暗示了贯穿的断层将通过横向流体流动促进连通性。代替单个连续的断层,我们提出了一个变形带的存在,该变形带与距离前缘的Surprise Valley断层的增长有关。地热循环的含义是,这是一个孔隙度增加的区域,但缺乏沿长度方向的连通性,该连通性可能会引导流体穿过山谷。热流体循环很可能主要受N-S趋势正常断层之间的相互作用控制。

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