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Magma plumbing beneath Anak Krakatau volcano, Indonesia : evidence for multiple magma storage regions

机译:印度尼西亚Anak Krakatau火山下的岩浆管道:多个岩浆储存区域的证据

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摘要

Understanding magma plumbing is essential for predicting the behaviour of explosive volcanoes. We investigate magma plumbing at the highly active Anak Krakatau volcano (Indonesia), situated on the rim of the 1883 Krakatau caldera by employing a suite of thermobarometric models. These include clinopyroxene-melt thermobarometry, plagioclase-melt thermobarometry, clinopyroxene composition barometry and olivine-melt thermometry. Petrological studies have previously identified shallow magma storage in the region of 2–8 km beneath Krakatau, while existing seismic evidence points towards mid- to deep-crustal storage zone(s), at 9 and 22 km, respectively. Our results show that clinopyroxene in Anak Krakatau lavas crystallized at a depth of 7–12 km, while plagioclase records both shallow crustal (3–7 km) and sub-Moho (23–28 km) levels of crystallization. These magma storage regions coincide with well-constrained major lithological boundaries in the crust, implying that magma ascent and storage at Anak Krakatau is strongly controlled by crustal properties. A tandem seismic tomography survey independently identified a separate upper crustal (<7 km) and a lower to mid-crustal magma storage region (>7 km). Both petrological and seismic methods are sensitive in detecting magma bodies in the crust, but suffer from various limitations. Combined geophysical and petrological surveys, in turn, offer increased potential for a comprehensive characterization of magma plumbing at active volcanic complexes.
机译:了解岩浆管道对于预测爆炸性火山的行为至关重要。我们采用一套热压模型研究了位于1883年Krakatau火山口边缘的高度活跃的Anak Krakatau火山(印度尼西亚)的岩浆管道。这些方法包括斜柏熔体热压法,斜柏胶熔体热压法,斜柏烯组成气压计和橄榄石熔体测温法。岩石学研究以前确定了喀拉喀托下方2-8公里区域内的浅层岩浆储层,而现有的地震证据则指向分别在9公里和22公里处的中壳至深壳储层。我们的研究结果表明,Anak Krakatau熔岩中的斜辉石在7-12 km的深度结晶,而斜长石记录了浅地壳(3-7 km)和亚莫霍面(23-28 km)的结晶水平。这些岩浆储集区与地壳中受约束的主要岩性边界相吻合,这表明Anak Krakatau的岩浆上升和储集受到地壳性质的强烈控制。串联地震层析成像调查独立地确定了单独的上地壳(<7 km)和下中地壳岩浆存储区域(> 7 km)。岩石学方法和地震方法都对探测地壳中的岩浆体很敏感,但是受到各种限制。反过来,结合地球物理和岩石学勘测,为活火山复合体的岩浆管道的全面表征提供了更大的潜力。

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