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Shallow magma pre-charge during repeated Plinian eruptions at Sakurajima volcano

机译:樱岛火山多次普利尼山喷发期间的浅岩浆预充

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摘要

Vigorous explosive eruptions that produce continuous high eruption plumes (Plinian eruptions) are generally assumed to tap a magma reservoir. The 1914 Plinian eruption at the Sakurajima volcano located on the Aira caldera rim is one such case, where the main magma reservoir was assumed to be located approximately 10 km beneath the caldera. However, we report that estimated magma storage depths immediately prior to the eruption were much shallower (0.9–3.2 km) on the basis of pressure at which volatiles within the phenocryst melt inclusions and plagioclase rims were finally equilibrated. The same is observed for two historic Plinian eruptions in 1471 and 1779. This depth is even shallower than the shallowest magma reservoir estimated from the pressure source for geodetic deformation during recent Vulcanian explosions (4 km beneath the crater). We propose that the magmas were fed from a thick conduit pre-charged from deeper reservoirs. The ground subsidence observed after 1914 within the Aira caldera may have been caused by conduit recharge following the eruption. Voluminous conduit recharge could be key to forecasting the next possible large eruption at the Sakurajima volcano.
机译:一般认为,会产生连续高喷发羽流的剧烈爆炸爆发(普利尼亚爆发)是从岩浆储层中抽出的。 1914年位于艾拉火山口边缘的樱岛火山上的普利尼山喷发就是这种情况之一,假定主要的岩浆储层位于火山口下方约10公里处。但是,我们报告说,在压力作用下,表晶熔体包裹体和斜长石边缘最终达到平衡,在喷发之前,估计的岩浆储存深度要浅得多(0.9-3.2 km)。在1471年和1779年的两次历史性普利尼山喷发中也观察到了相同的情况。该深度甚至比根据最近的瓦肯火山爆发期间大地形变的压力源估算的最浅的岩浆储层(火山口下方4公里)更浅。我们建议岩浆是从较深的储层中预装的一条粗导管中注入的。 1914年之后在Aira破火山口中观测到的地面沉降可能是由喷发后的导管补给引起的。大量的管道补给可能是预测樱岛火山下一次可能出现的大喷发的关键。

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