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Magma extraction pressures and the architecture of volcanic plumbing systems

机译:岩浆提取压力和火山管道系统的结构

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The deposits of large volcanic eruptions provide the sole record of the architecture of magmatic plumbing systems in the moments when large pools of crystal-poor, eruptible magma are present in the crust. It is widely accepted that silicic magmas form by segregation of melt-rich, crystal-poor magma from a crystal-rich source; however, the depths at which segregation takes place and the distribution of the magma within the crust are not well constrained. We present a new approach to calculate pressures at which crystal-poor, eruptible magma is extracted from a crystal-rich source (i.e. mush). We apply the approach to a sequence of large (>50 km(3)) eruptions from the Taupo Volcanic Zone (TVZ), New Zealand, which were part of a volcanic flare-up. We compare the calculated extraction pressures with pre-eruptive storage pressures for the same units. Our results show that storage and extraction pressures do not always coincide. Instead, eruptible magma can be completely segregated from the crystal-rich source, and stored at shallower levels in the crust prior to eruption. In the case of the TVZ flare-up, repeated input of material and heat - probably coupled with tectonic extension - gradually conditioned the crust and allowed extraction of eruptible magma over a growing range of pressures with time. Our approach has the potential to reveal important information on the structure and distribution of magmatic systems within the shallow crust. (C) 2019 Elsevier B.V. All rights reserved.
机译:大火山爆发的沉积物提供了在地壳中的大池中的岩石覆盖的岩浆池中的时刻中的岩浆管道系统结构的唯一记录。广泛认可于硅胶岩浆形式通过富含晶体的熔化的熔体的熔体的岩石岩浆的偏析;然而,在地壳内发生隔离和岩浆的分布的深度并不受到很好的限制。我们介绍了一种新方法来计算晶体较差,岩浆从富含晶体的源极(即糊状物)中提取的压力。我们将这种方法应用于一系列大(> 50公里(3))爆发的新西兰,这是火山火炬的一部分。我们将计算出的提取压力与相同单位的预发出储存压力进行比较。我们的结果表明,储存和提取压力并不总是一致。相反,可以从富含晶体的源处完全隔离即可,并在爆发之前储存在地壳中的较浅水平上。在TVZ FLARE-UP的情况下,重复输入材料和热量 - 可能与构造延伸相结合 - 逐渐调节地壳并允许在随着时间的推移范围内的压力范围内萃取即可提取。我们的方法有可能揭示关于浅层地壳内岩浆系统结构和分配的重要信息。 (c)2019 Elsevier B.v.保留所有权利。

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