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Regional study of mineral resources in Nevada: Insights from three-dimensional analysis of gravity and magnetic anomalies

机译:内华达州矿产资源区域研究:重力和磁异常三维分析的启示

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摘要

A three-dimensional interpretation of the basins of Nevada was developed based on statewide data bases of digital-gravity, magnetic, geologic, well, and topographic information. An iterative technique was applied to isostatic residual gravity anomalies in Nevada in order to define the location and shape of pre-Tertiary basement and to produce a gravity map that reflects variations of density within the pre-Tertiary basement. The dominant feature of the basement gravity of Nevada is an enormous area of low gravity that spans the entire state between latitudes 37°N and 40.5°N. This regional low strongly correlates with the distribution of middle and late Tertiary volcanic rocks and may reflect silicic intrusions within the mid-crust and upper crust that are the counterparts of volcanic rocks at the surface. Although 80% of Nevada is covered by Cenozoic deposits, these deposits are thicker than 1 km over only about 20% of the state. The remaining 60% of Nevada may have pre-Tertiary basement rocks within reach of current mineral-exploration techniques. Aeromagnetic profiles from the National Uranium Resource Evaluation (NURE) were analyzed in order to produce a map showing the location of shallow magnetic sources in Nevada. This analysis shows that 46% of the state has magnetic sources, generally Mesozoic and Cenozoic igneous rocks, within 1 km of the surface. A linear magnetic anomaly in north-central Nevada has been interpreted by others as a rift zone active during middle Miocene time. The rift also is evident in NURE magnetic profiles, but our interpretation suggests that the magnetic expression of the rift continues south-southeast with similar strike to at least 38°N and perhaps to the amagmatic zone (lat. 37°N). The survival since the middle Miocene of this narrow crustal feature, essentially linear over a distance of 500 km, is difficult to interpret in light of later Basin and Range deformation. Our analysis of gravity anomalies shows that many deep Cenozoic basins are located near the rift, yet only two basins cut across it, and at least five others change strike near the rift, as if to avoid it. The rift may have remained linear because it is associated with crustal structures that acted to resist subsequent deformation.
机译:基于全州数字重力, 磁,地质,井和地形信息的全州数据库,开发了内华达盆地的三维解释。迭代 技术应用于内华达州的静压残余重力异常 ,以定义第三系 地下室的位置和形状并产生一个重力图,反映了第三纪前地下室内密度的变化 。内华达州地下室重力的主要特征 是一个巨大的低 重力区域,其范围横跨纬度37°N 和40.5° N.该区域低点与中,晚第三纪火山岩的 分布密切相关,并且 可能反映了中地壳和上部 地壳内的硅质侵入。是地表上火山岩的对应物。 虽然内华达州80%的地方都覆盖有新生代矿床,但这些 矿床的厚度只有1公里,仅占该州的20% 内华达州剩余的60%可能具有第三纪前的基底岩石 ,这在当前的矿物勘探技术所能达到的范围内。为了评估内华达州浅层磁源的位置 的位置,对资源评估 (NURE)进行了分析。该分析表明,在表面的1公里内, 的状态有46%具有磁源,通常是中生代和 新生代火成岩。内华达州中北部的线性 磁异常已被其他人解释为中新世中期活跃的裂谷带。 该裂谷也很明显在NURE磁剖面中,但我们的 解释表明, 裂谷的磁表达继续向东南偏南,走向至少与 38°N类似 自该狭窄地壳 特征的中中新世以来,在500 km的距离上基本呈线性,其生存期为 很难根据后来的盆地和山脉变形来解释。 我们对重力异常的分析表明,许多深新生代的 盆地都位于裂谷附近,但是只有两个盆地横穿 它,并且至少有五个其他盆地在裂谷附近改变了走向,以 避免。裂谷可能保持线性,因为它 与地壳结构相关联,该地壳结构可抵抗随后的 变形。

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  • 来源
    《GSA Bulletin》 |1991年第6期|795-803|共9页
  • 作者单位

    U.S. Geological Survey, Menlo Park, California 94025;

    U.S. Geological Survey, Menlo Park, California 94025;

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  • 正文语种 eng
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