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A conceptual model of the Pilgrim Hot Springs geothermal system, Seward Peninsula, Alaska.

机译:阿拉斯加苏厄德半岛朝圣者温泉地热系统的概念模型。

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摘要

This work has developed a conceptual geological model for the Pilgrim Hot Springs geothermal system supporting the exploration, assessment and potential development of this resource for direct use and electric power production. The development of this model involved the analysis of a variety of subsurface and geophysical data and the construction of a 3D lithostratigraphic block model. Interpretation of the data and block model aimed to establish the most likely scenario for subsurface geothermal fluid flow. As part of this work, well cuttings were analyzed for permeability and correlated with geophysical logs from well to well to constrain the stratigraphic architecture of the unconsolidated sediments. Hydrothermal alteration of the sediments and bedrock core was also studied through reflectance spectroscopy and methylene blue titration in order to investigate past fluid migration pathways. The structure of the basin was interpreted through geophysical surveys including aeromagnetic resistivity, isostatic gravity, and magnetotelluric resistivity. Based on temperature, well logs, geophysical surveys, and lithologic data, the system is subdivided into a shallow outflow aquifer and a deeper reservoir beneath a clay cap connected by a conduit with 91°C hydrothermal fluid upflow. Stratigraphic correlations indicate several clay layers throughout the section with a dominant clay cap at 200-275 m depth. Extensive pyritization and the clay mineral assemblage suggest an argillic-style alteration facies indicative of past temperatures at or slightly elevated above current conditions of hydrothermal activity at Pilgrim Hot Springs. The conceptual model supports production from this resource in those subsurface zones where there is sufficient permeability and connectivity with the upflow zone.
机译:这项工作为朝圣者温泉地热系统开发了一个概念性地质模型,为直接使用和发电的资源的勘探,评估和潜在开发提供了支持。该模型的开发涉及对各种地下和地球物理数据的分析以及3D岩石地层区块模型的构建。数据和区块模型的解释旨在建立地下地热流体流动的最可能方案。作为这项工作的一部分,对钻屑的渗透率进行了分析,并与各井之间的地球物理测井相关联,以约束未固结沉积物的地层构造。还通过反射光谱和亚甲基蓝滴定法研究了沉积物和基岩岩心的热液蚀变,以研究过去的流体运移途径。该盆地的结构是通过地球物理调查来解释的,包括气磁电阻率,等静重力和大地电磁电阻率。根据温度,测井曲线,地球物理勘测和岩性数据,该系统可细分为浅层流出含水层和黏土盖下较深的油藏,该黏土盖通过导管与91°C的热液向上流动连接。地层相关性表明,整个剖面上有几个粘土层,主要的粘土盖位于200-275 m深度。大量的黄铁矿化和黏土矿物的组合表明,有一种泥质型的蚀变相,表明朝圣温度在过去的温度或比目前在朝圣者温泉热液活动的条件略高。概念模型支持在那些具有足够渗透率和与上流区的连通性的地下区域中利用该资源进行生产。

著录项

  • 作者

    Miller, Joshua K.;

  • 作者单位

    University of Alaska Fairbanks.;

  • 授予单位 University of Alaska Fairbanks.;
  • 学科 Geology.
  • 学位 M.S.
  • 年度 2013
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:55

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