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Regional correlation of Grande Ronde Basalt flows, Columbia River Basalt Group, Washington, Oregon, and Idaho

机译:大朗德玄武岩流,哥伦比亚河玄武岩群,华盛顿,俄勒冈州和爱达荷州的区域相关性

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摘要

The tholeiitic flood basalts of the Columbia River Basalt Group of middle and late Miocene age cover more than 200,000 km2 in Washington, Oregon, and Idaho. The most voluminous formation of the Group, the Grande Ronde Basalt, erupted for 2 m.y. from north-northwest-trending fissure systems concentrated in southeast Washington and adjacent Oregon and Idaho. Four magnetostratigraphic units (designated R1, N1, R2, and N2 from oldest to youngest) are recognized on the basis of polarity in the Grande Ronde and provide the broad stratigraphic framework for the formation. In this study, major-element chemistry and relative stratigraphic position within the polarity intervals are used to identify and correlate individual flows and sequences of flows within the Grande Ronde Basalt on a regional scale. Systematic examination of more than 350 analyses from 47 stratigraphic sections show that most flows fall into one of five major chemical groupings, which are distinguished primarily by small but significant variations in MgO, TiO2, and P2O5 content. In addition, four minor chemical types local to the eastern part of the province have been identified. Feeder dikes of each chemical type have also been located. Flows or packets of flows of each chemical type can be correlated between field sections to define specific chemical-stratigraphic subunits. These subunits consist of several flows collectively 30–150 m thick. Subunits of most chemical types are repeated at irregular intervals throughout the formation; no progressive chemical trend occurs within the Grande Ronde. Many of the chemical-stratigraphic subunits extend to the margins of the province, although most are confined to the source region in eastern Washington. Although the total number of subunits is less in the west away from the fissure systems, the total thicknesses of the N2 and R2 magnetostratigraphic units are each as thick or thicker than the corresponding units in eastern Washington. The greatest thicknesses occur in the central part of the province within the Pasco basin. The distribution of basalt relative to the location of vents, as well as the relative east-west thicknesses, suggests that basalt flowed hundreds of kilometres westward during the most voluminous Grande Ronde eruptions, ponding against the irregular margin of the Cascade Range and being diverted through the ancestral Columbia Gorge toward the Washington-Oregon coast. Between these huge sheetflood events, smaller eruptions blanketed areas within the source region, and ongoing regional subsidence created a shallow westward-draining basin in the center of the province.
机译:中新世中晚期的哥伦比亚河玄武岩群的高潮性玄武岩覆盖了华盛顿,俄勒冈州和爱达荷州的 200,000 km 2 。该组中最大的岩层 隆德隆德玄武岩喷发了2 y。来自 北-西北走向的裂缝系统集中在华盛顿的东南 以及邻近的俄勒冈州和爱达荷州。四个磁地层 单元(分别为R 1 ,N 1 ,R 2 和N 2 (从最老到最年轻) 在格兰德朗德 中基于极性被识别,并为该地层提供了广泛的地层学框架。 在本研究利用极性区间内的主要元素化学和相对地层 位置来识别 并关联 内的单个流和流序列 从47个地层的 部分对350多个分析进行的系统检查表明,大部分流量属于五种主要化学物质 之一。 >组,主要区别在于MgO,TiO 2 和P 2 O 5 中的微小但显着的 差异>内容。此外,已经确定了该省东部地区局部的四种 小型化学类型。每种化学类型的给料堤也已定位。 每种化学类型的流量或流量包可以在字段之间相互关联 以定义特定的化学地层 亚基。这些亚单元由几个流动组成,总厚度为 30-150 m。大多数化学类型的亚基在整个地层中以不规则的间隔重复 ;大朗德内没有发生任何渐进式化学趋势。 许多化学地层单元延伸到该省的边缘,尽管大多数都被限制了。到华盛顿东部的源区域 。尽管在远离裂隙系统的西部,亚单位 的总数较少,但N 2 和R 的总 厚度2 地磁单位 比华盛顿东部 的相应单位厚或厚。最大厚度出现在帕斯科盆地内该省的中部 玄武岩的分布相对于喷口的位置也 作为东西向的相对厚度,表明 玄武岩在最 大隆德隆德喷发期间向西流动了数百公里,这是在针对不规则的 margin级联瀑布,并通过祖先的哥伦比亚峡谷转移到华盛顿-俄勒冈海岸。在这些 大片洪事件之间,较小的喷发覆盖了源区 内的区域,持续的区域沉降在中心形成了一个 浅向西流域的省份。

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  • 来源
    《GSA Bulletin》 |1986年第11期|1300-1318|共19页
  • 作者单位

    U.S. Geological Survey, M.S. 959, Reston, Virginia 22092;

    U.S. Geological Survey, Hawaii National Park, Hawaii 96718;

    U.S. Geological Survey, David A. Johnston Cascades Volcano Observatory, 5400 MacArthur Blvd., Vancouver, Washington 98661;

    Department of Geology, Louisiana State University, Baton Rouge, Louisiana 70808;

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