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首页> 外文期刊>Geosphere >Transtensional deformation and structural control of contiguous but independent magmatic systems: Mono-Inyo Craters, Mammoth Mountain, and Long Valley Caldera, California
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Transtensional deformation and structural control of contiguous but independent magmatic systems: Mono-Inyo Craters, Mammoth Mountain, and Long Valley Caldera, California

机译:连续但独立的岩浆系统的张性变形和结构控制:加利福尼亚州猛Mono山脉和隆谷火山口的Mono-Inyo火山口

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The Long Valley region of eastern California (United States) is the site of abundant late Tertiarya€“present magmatism, including three geochemically distinct stages of magmatism since ca. 3 Ma: Mammoth Mountain, the Mono-Inyo volcanic chain, and Long Valley Caldera. We propose two tectonic models, one explaining the Mammoth Mountaina€“Mono-Inyo magmatism and the other explaining the presence of Long Valley Caldera. First, the ongoing Mammoth Mountaina€“Mono-Inyo volcanic chain magmatism is explained by a ridge-transform-ridge system, with the Mono-Inyo volcanic chain acting as one ridge segment and the South Moat fault acting as a transform fault. Implicit in this first model is that this region of eastern California is beginning to act as an incipient plate boundary. Second, the older Long Valley Caldera system is hypothesized to occur in a region of enhanced extension resulting from regional fault block rotation, specifically involving activation of the sinistral faults of the Mina deflection. The tectonic models are consistent with observed spatial and temporal differences in the geochemistry of the regional magmas, and the westward progression of magmatism since ca. 12 Ma.
机译:美国东部加利福尼亚州的长谷地区是第三纪现今大量岩浆活动的地点,包括大约从1993年以来岩浆活动的三个地球化学不同的阶段。 3 Ma:猛mm山,Mono-Inyo火山链和长谷火山口。我们提出了两种构造模型,一种解释了猛mm象山(Mommoth Mountaina)-“莫诺-伊尼奥”岩浆作用,另一种解释了长谷火山口的存在。首先,正在发生的猛Mountain山脉Mountain-Ino-Inyo火山链岩浆作用是由一个脊-转换-脊系统解释的,其中Mono-Inyo火山链是一个脊段,而南护城河断裂是一个转换断裂。在第一个模型中隐含的是,加利福尼亚东部的这一地区开始充当起初的板块边界。其次,假设较早的长谷火山口系统发生在由区域断层块旋转引起的扩展性增强的区域中,特别是涉及Mina偏转的左侧断裂的激活。构造模式与区域岩浆地球化学观测到的时空差异,以及大约自大约1989年以来的岩浆活动向西发展一致。十二妈

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