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Geology and geochemistry of volcanic centers within the eastern half of the Sonoma volcanic field, northern San Francisco Bay region, California

机译:加利福尼亚北部旧金山湾地区索诺玛火山场东半部内火山中心的地质和地球化学

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Volcanic rocks in the Sonoma volcanic field in the northern California Coast Ranges contain heterogeneous assemblages of a variety of compositionally diverse volcanic rocks. We have used field mapping, new and existing age determinations, and 343 new major and trace element analyses of whole-rock samples from lavas and tuff to define for the first time volcanic source areas for many parts of the Sonoma volcanic field. Geophysical data and models have helped to define the thickness of the volcanic pile and the location of caldera structures. Volcanic rocks of the Sonoma volcanic field show a broad range in eruptive style that is spatially variable and specific to an individual eruptive center. Major, minor, and trace-element geochemical data for intracaldera and outflow tuffs and their distal fall equivalents suggest caldera-related sources for the Pinole and Lawlor Tuffs in southern Napa Valley and for the tuff of Franz Valley in northern Napa Valley. Stratigraphic correlations based on similarity in eruptive sequence and style coupled with geochemical data allow an estimate of 30 km of right-lateral offset across the West Napa-Carneros fault zones since a??5 Ma.The volcanic fields in the California Coast Ranges north of San Francisco Bay are temporally and spatially associated with the northward migration of the Mendocino triple junction and the transition from subduction and associated arc volcanism to a slab window tectonic environment. Our geochemical analyses from the Sonoma volcanic field highlight the geochemical diversity of these volcanic rocks, allowing us to clearly distinguish these volcanic rocks from those of the roughly coeval ancestral Cascades magmatic arc to the west, and also to compare rocks of the Sonoma volcanic field to rocks from other slab window settings.
机译:加利福尼亚北部海岸山脉索诺玛火山场中的火山岩包含各种组成多样的火山岩的非均质组合。我们已经使用了野外测绘,新的和现有的年龄确定方法,以及对来自熔岩和凝灰岩的全岩石样品进行的343种新的主要和微量元素分析,首次定义了索诺玛火山场许多部分的火山源区。地球物理数据和模型有助于定义火山桩的厚度和火山口结构的位置。索诺玛火山场的火山岩以广泛的喷发形式显示,在空间上是可变的,并且特定于单个喷发中心。破火山口内和流出凝灰岩的主要,次要和痕量元素地球化学数据以及其远端落下的等效数据表明,纳帕谷南部的Pinole和Lawlor凝灰岩以及纳帕谷北部的弗朗兹谷的凝灰岩与破火山口有关。基于喷发序列和样式的相似性以及地球化学数据,通过地层相关性,可以估计自5 Ma以来整个西纳帕-卡内罗斯断层带的右偏偏移为30 km。加利福尼亚北部的加利福尼亚海岸山脉的火山场旧金山湾在时间和空间上与门多西诺三联结的北移以及从俯冲和相关的弧形火山岩向板状窗构造环境的过渡有关。我们从索诺玛火山场进行的地球化学分析突显了这些火山岩的地球化学多样性,使我们能够清楚地将这些火山岩与西面的大致先祖级联岩浆岩浆弧区分开,并将索诺玛火山场的岩石与其他平板窗口设置中的岩石。

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