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首页> 外文期刊>Bulletin of Volcanology: Journal of the International Association of Volcanology and Chemistry of the Earth s Interior >Submarine giant pumice: a window into the shallow conduit dynamics of a recent silicic eruption
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Submarine giant pumice: a window into the shallow conduit dynamics of a recent silicic eruption

机译:潜艇巨头浮石:近期硅爆发的浅管爆发动力学

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摘要

Meter-scale vesicular blocks, termed giant pumice, are characteristic primary products of many subaqueous silicic eruptions. The size of giant pumices allows us to describe meter-scale variations in textures and geochemistry with implications for shearing processes, ascent dynamics, and thermal histories within submarine conduits prior to eruption. The submarine eruption of Havre volcano, Kermadec Arc, in 2012, produced at least 0.1km(3) of rhyolitic giant pumice from a single 900-m-deep vent, with blocks up to 10m in size transported to at least 6km from source. We sampled and analyzed 29 giant pumices from the 2012 Havre eruption. Geochemical analyses of whole rock and matrix glass show no evidence for geochemical heterogeneities in parental magma; any textural variations can be attributed to crystallization of phenocrysts and microlites, and degassing. Extensive growth of microlites occurred near conduit walls where magma was then mingled with ascending microlite-poor, low viscosity rhyolite. Meter- to micron-scale textural analyses of giant pumices identify diversity throughout an individual block and between the exteriors of individual blocks. We identify evidence for post-disruption vesicle growth during pumice ascent in the water column above the submarine vent. A 2D cumulative strain model with a flared, shallow conduit may explain observed vesicularity contrasts (elongate tube vesicles vs spherical vesicles). Low vesicle number densities in these pumices from this high-intensity silicic eruption demonstrate the effect of hydrostatic pressure above a deep submarine vent in suppressing rapid late-stage bubble nucleation and inhibiting explosive fragmentation in the shallow conduit.
机译:仪表尺度的覆膜块,称为巨大的浮石,是许多亚水性爆发的特征初级产物。巨大的巨大薄散的尺寸使我们能够在爆发之前描述纹理和地球化学的仪表和地球化学的仪表尺度变化,并在喷发前潜艇导管中的潜艇管道中的热历史。 2012年,亚马达克弧菌潜艇喷发,肯德克弧,从单个900 m深通风口产生至少0.1km(3)个菱形巨型浮石,尺寸高达10米的块距离源极至少6km。我们从2012年的爆发中取样并分析了29个巨大的巨型咒语。整个岩石和基质玻璃的地球化学分析显示了父母岩浆中地球化学异质性的证据;任何纹理变化都可以归因于苯杂交和微氯化物的结晶,并脱气。在导管壁附近的广泛生长发生在导管壁附近,然后将岩浆与升高的微贫且较低的低粘度流纹岩混合。仪表 - 微米尺寸的巨型质谱识别整个块的多样性,以及各个块的外部之间。我们识别在潜艇通风口上方水柱中破碎后囊泡生长的证据。具有喇叭形浅导管的2D累积应变模型可以解释观察到的紫刺率对比(细长管囊泡与球形囊泡)。这些高强度硅喷发的这些泡沫中的低囊泡数密度展示了静脉静脉发泄在抑制快速晚期气泡成核和抑制浅导管中的爆炸片段的影响。

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