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Structural Controls of the Neal Hot Springs Geothermal System, Eastern Oregon.

机译:俄勒冈州东部Neal温泉地热系统的结构控制。

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摘要

Detailed geologic mapping (1:24,000 scale), structural and geochemical analyses, and integration of available geophysical and well-field data were utilized to assess the structural controls of the Neal Hot Springs geothermal field in eastern Oregon. The geothermal field lies within the intersection of two regional grabens, the middle-late Miocene, north-trending, Oregon-Idaho graben and younger late Miocene to Holocene, northwest-trending, western Snake River Plain graben. It is marked by Neal Hot Springs, which effuse from opaline sinter mounds just north of Bully Creek. Production and injection wells, with temperatures up to 142°C, intersect the Neal fault zone at depths of 680-1900 m and subsidiary faults within a relay ramp or step-over within the fault zone.;The stratigraphy at Neal correlates with four regional packages. Basement rocks, discovered in one well, are granite, tentatively correlated with Jurassic Olds Ferry-Izee terrane. Nonconformably above is a thick package of middle Miocene Columbia River Basalt Group lavas, regionally known as the basalt of Malheur Gorge. Conformably above are middle to late Miocene Oregon-Idaho graben lavas, volcaniclastics, fluvial and lacustrine rocks. Overlying are the youngest rocks at Neal, which are late Miocene to Pliocene, western Snake River Plain lacustrine, fluvial, and volcaniclastic rocks.;The structural framework at Neal is characterized by northerly to northwest-striking normal faults, including the geothermally related Neal fault zone. Stress inversion of kinematic data reveal an extensional stress regime, including an interpreted younger, southwest-trending (∼243°), least principal stress and an older, west-trending (∼265°) least principal stress.;The geothermal field is bounded on the east by the Neal fault, a major, west-dipping, north-northwest-striking, steeply dipping normal to oblique-slip fault, along which geothermal fluids ascend, and on the west by the concealed north-northwest-striking, west-dipping Sugarloaf Butte fault. The Neal fault zone can be modeled into two structural settings: an interpreted older, left-stepping, normal-slip fault zone and a younger, oblique sinistral-normal zone, suggested by the earlier west-trending and later southwest-trending extensional stress regimes. Recent sinistral-normal displacement may have generated a small pull-apart basin in the Neal area and facilitated development of the geothermal system. 'Hard-linkage' between the Neal and Sugarloaf Butte faults occurs through concealed, west-northwest-striking faults, including the Cottonwood Creek subvertical fault, along which lateral fluid-flow is likely. An inferred north-plunging fault intersection at the Neal Hot Springs likely controls the location of the hot springs and sinter terraces.;Young structural features are evident at Neal. The Neal fault zone cuts Quaternary fans and late Miocene lower and upper Bully Creek Formation sedimentary rocks. In addition, the geothermal field is 4 km west of the active, north- to northwest-striking, normal-slip Cottonwood Mountain fault. Furthermore, the field is within several kilometers of recently detected seismicity. This, coupled with its active hot springs (∼90°C), opaline sinter mounds, and geothermal fluid flow, suggest that the geothermal field lies within an active (Quaternary), southward-terminating, left-stepping fault zone, which locally acts as a pull-apart basin with sinistral- and normal-slip components.
机译:详细的地质制图(1:24,000比例),结构和地球化学分析以及可用的地球物理和井场数据的整合被用来评估俄勒冈州东部Neal Hot Springs地热田的结构控制。地热场位于两个区域中部的中部交界处,即中新世中晚期,北向,俄勒冈-爱达荷州中部和较年轻的中新世至全新世,西北前向,蛇河平原西部中部。它以尼尔温泉(Neal Hot Springs)为标志,从Bully Creek以北的不透明的烧结土堆冒出来。温度高达142°C的生产井和注入井在680-1900 m的深度处与Neal断层带相交,在断层带内的继发层或阶跃中与辅助断层相交; Neal的地层与四个区域相关包。在一口井中发现的基底岩石是花岗岩,暂时与侏罗纪的Olds Ferry-Izee地层相关。上面不整合地是中新世哥伦比亚河玄武岩群熔岩的厚厚包裹,该熔岩在区域上被称为Malheur峡谷的玄武岩。上等中晚期是俄勒冈中部至爱达荷州中新世的火山岩,火山碎屑岩,河床和湖相岩石。上覆的是Neal的最年轻的岩石,是中新世至上新世晚期,Snake River平原西部的湖相,河流和火山碎屑岩; Neal的结构框架的特征是北向西北走向的正断层,包括与地热有关的Neal断层区。运动学数据的应力反演揭示了一种扩展应力状态,包括解释的较年轻的西南趋势(〜243°),最小主应力和较古老的,西部趋势(〜265°)最小主应力。在东部的尼尔断裂带,一个大的,西向倾斜的,北西北走向的,陡峭的垂直倾斜至倾斜滑移的断裂带,地热流体沿着该断裂带上升;在西部,由隐蔽的西北向的冲击带向西倾斜。浸糖面包比尤特断层。 Neal断层带可以建模为两个结构背景:较早的向西趋势和较晚的向西南向伸展应力状态所建议的解释为较旧的,左阶的,正滑断层带和较年轻的斜向正弦正态带。 。最近的正弦位移可能在尼尔地区产生了一个小的分离盆地,并促进了地热系统的发展。尼尔和舒格洛夫比尤特断层之间的“硬联系”是通过隐蔽的西北向走向的断层发生的,包括卡顿伍德克里克(Cottonwood Creek)垂直下断层,可能沿其横向流动。推断在尼尔温泉的北倾断层交汇点可能控制了温泉和烧结矿阶地的位置。尼尔的构造特征很明显。 Neal断层带切割第四纪扇和中新世下部和上部Bully Creek组沉积岩。此外,地热田位于活跃的,北向西北走向,正滑的卡顿伍德山断裂带以西4公里处。此外,该领域距离最近发现的地震活动只有几公里之遥。再加上活跃的温泉(〜90°C),不透明的烧结土堆和地热流体流动,表明地热场位于一个活跃的(第四纪)向南终止的,左阶的断层带中,该断层局部地起作用。作为具有左旋和法向滑动分量的拉开式盆地。

著录项

  • 作者

    Edwards, Joel H.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Geology.;Geochemistry.
  • 学位 M.S.
  • 年度 2013
  • 页码 93 p.
  • 总页数 93
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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