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Multi-level magma plumbing at Agung and Batur volcanoes increases risk of hazardous eruptions

机译:阿贡火山和巴图尔火山的多级岩浆管道增加了危险喷发的风险

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The island of Bali in Indonesia is home to two active stratovolcanoes, Agung and Batur, but relatively little is known of their underlying magma plumbing systems. Here we define magma storage depths and isotopic evolution of the 1963 and 1974 eruptions using mineral-melt equilibrium thermobarometry and oxygen and helium isotopes in mineral separates. Olivine crystallised from a primitive magma and has average δ18O values of 4.8‰. Clinopyroxene records magma storage at the crust-mantle boundary, and displays mantle-like isotope values for Helium (8.62 RA) and δ18O (5.0–5.8‰). Plagioclase reveals crystallisation in upper crustal storage reservoirs and shows δ18O values of 5.5–6.4‰. Our new thermobarometry and isotope data thus corroborate earlier seismic and InSAR studies that inferred upper crustal magma storage in the region. This type of multi-level plumbing architecture could drive replenishing magma to rapid volatile saturation, thus increasing the likelihood of explosive eruptions and the consequent hazard potential for the population of Bali.
机译:印度尼西亚的巴厘岛岛拥有两个活跃的平流火山阿贡和巴图尔,但对其底层岩浆管道系统所知甚少。在这里,我们使用矿物熔体平衡热压法以及矿物分离中的氧和氦同位素来定义1963年和1974年喷发的岩浆储存深度和同位素演化。橄榄石从原始岩浆中结晶出来,平均δ18O值为4.8‰。 Clinopyroxene记录了地壳-地幔边界处的岩浆储存,并显示了氦(8.62 RA)和δ18O(5.0-5.8‰)的地幔状同位素值。斜长石揭示了上地壳储层中的结晶,并显示出δ18O值为5.5-6.4‰。因此,我们新的热压法和同位素数据证实了较早的地震和InSAR研究,这些研究推断出该地区的上地壳岩浆储量。这种类型的多层管道结构可能会促使补给的岩浆迅速挥发至饱和状态,从而增加了爆炸爆发的可能性以及对巴厘岛人口的潜在危害。

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