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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 >Geochemical and textural constraints on degassing processes in sub-Plinian eruptions: case-study of the Greenish Pumice eruption of Mount Somma-Vesuvius
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Geochemical and textural constraints on degassing processes in sub-Plinian eruptions: case-study of the Greenish Pumice eruption of Mount Somma-Vesuvius

机译:地球化学爆发中脱气过程的地球化学和纹理限制:索马 - 维苏威山青绿色浮石爆发的病例研究

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摘要

Plinian eruptions are characterized by high intensity and an overall steady character, and result in a stable convective column. The main processes controlling the dynamics of such steady and stable plume systems have been extensively investigated. Conversely, sub-Plinian eruptions are unsteady, as recorded by the large variability of the products and deposits. Our knowledge of the processes creating this unsteadiness on various timescales remains limited, and still requires more observations as well as theoretical and experimental investigation. Here, we focus on the sub-Plinian eruption of the Greenish Pumice (GP, 19,265 +/- 105 BP), Mt. Somma-Vesuvius (Italy). On the basis of coupled geochemical and textural analyses of samples from the well-established stratigraphy of the GP deposits, we investigate volatiles (H2O, CO2, F, Cl) to better constrain the unsteady subPlinian eruptive style. This allows us to carry out a detailed study of the degassing processes in relation to the eruption dynamics. We find that degassing by open-system processes generally dominates throughout the entire eruption, but alternates with episodes of closed-system degassing. The fluctuating degassing regimes, responsible for the variable magma ascent rate within the conduit, are also responsible for the eruptive column instability. Volatile behavior is well correlated with textural heterogeneities of the eruptive products. Both reflect higher conduit heterogeneity than for Plinian eruptions, where we find a higher horizontal gradient in magma ascent velocity due to a smaller conduit diameter.
机译:Plinian爆发的特点是高强度和整体稳定的特征,导致稳定的对流柱。控制了这种稳定和稳定的羽流系统动态的主要过程已被广泛研究。相反,亚普林爆发不稳定,通过产品和沉积物的大可变性记录。我们对各种时间尺度创造这种不稳定性的过程的了解仍然有限,仍需要更多的观察结果以及理论和实验调查。在这里,我们专注于绿色浮石(GP,19,265 +/- 105 BP)的亚普林喷发,MT.MOMMA-VESUVIUS(意大利)。基于来自GP沉积物的良好地层的样本的耦合地球化学和质地分析,我们研究了挥发物(H2O,CO2,F,CL)以更好地限制不稳定的水性爆发式风格。这使我们能够对爆发动态进行脱气过程进行详细研究。我们发现开放系统过程的脱气通常在整个爆发过程中占主导地位,但与闭合系统脱气的集中的交替。波动的脱气制度负责导管内可变岩浆上升速率,也负责喷发柱不稳定性。挥发性行为与喷发产品的纹理异质性有良好相关。两者都反映了较高的导管异质性,而不是引发的导管,在那里我们在岩浆直径上发现岩浆上升速度的较高水平梯度。

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