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A crustal-scale integrated geophysical and tectonic study of the Snake River Plain region, northwestern USA

机译:美国西北蛇河平原地区的地壳综合地球物理和构造研究

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The Pacific Northwest region of North America is a site of very complex tectonomagmatic activity. This activity is due to subduction of the Pacific plate, the associated Cascade chain of volcanoes, micro-plate interactions, and mantle plume activity to the east of the plate margin that produced the Yellowstone hotspot track along the Eastern Snake River Plain (ESRP). A number of recent geophysical and geological studies have produced new results that have drawn attention to the complex tectonic setting of the region east of the Cascade Range, and its tectonic evolution is the subject of considerable scientific interest and debate. Numerous seismic studies have specifically focused on the crustal and upper mantle structure of the ESRP and Yellowstone area. However, crustal-scale studies of the Western Snake River Plain (WSRP) are limited. We undertook an integrated analysis of new and existing geophysical data and geologic constraints to study the crustal structure of the WSRP and generated two-dimensional crustal models across it. We observed both differences and similarities in the structural and tectonic evolution of the eastern and western arms of the SRP based on our integrated analysis. From a broader perspective based on recent geological and geophysical studies in the surrounding region, the intersection of the two arms of the SRP emerges as a major element of a complex tectonic intersection that includes the High Lava Plains of eastern Oregon, the Northern Nevada rift, a southwestern extension of the ESRP into northern Nevada, as well as, faulting and volcanism extending north-westward to connect with the Columbia River basalt plateau region. Thus, the goal of this study is to advance our understanding of the tectonomagmatic evolution of the region and to encourage further studies in the region.
机译:北美太平洋西北地区是一个非常复杂的Tectononommatic活动的网站。这项活动是由于太平板的俯冲,在板边缘的东部落后的火山,微板相互作用和地幔羽毛活动的相关级联链,从东部蛇河平原(ESRP)产生了黄石热点轨道。最近的许多地球物理和地质研究产生了新的结果,这些结果引起了级联范围向东地区的复杂构造环境,其构造演变是具有相当大的科学兴趣和辩论的主题。许多地震研究专门专注于ESRP和黄石区域的地壳和上部地幔结构。然而,西蛇河平原(WSRP)的地壳 - 规模研究有限。我们对新的和现有地球物理数据和地质限制进行了综合分析,以研究WSRP的地壳结构,并在其上产生二维地壳模型。根据我们的综合分析,我们观察了SRP东部和西部武器的结构和构造演变的差异和相似之处。根据近期地区地区地质和地球物理研究的更广泛的视角,SRP的两个臂的交叉点作为复杂构造交叉路口的主要因素,包括俄勒冈州北部俄勒冈州东部的高熔岩平原, ESRP的西南部延伸到内华达州北部,以及延伸西北部的断层和火山,与哥伦比亚河玄武岩玄武岩高原地区联系。因此,本研究的目标是推进我们对该地区的环保演变的理解,并鼓励该地区的进一步研究。

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