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Long-term magmatic evolution reveals the beginning of a new caldera cycle at Campi Flegrei

机译:长期岩浆演化揭示了Campi Flegrei新破火山口周期的开始

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摘要

Understanding the mechanisms that control the accumulation of large silicic magma bodies in the upper crust is key to determining the potential of volcanoes to form caldera-forming eruptions. Located in one of the most populated regions on Earth, Camp Flegrei is an active and restless volcano that has produced two cataclysmic caldera-forming eruptions and numerous smaller eruptive events over the past 60,000 years. Here, we combine the results of an extensive petrological survey with a thermomechanical model to investigate how the magmatic system shifts from frequent, small eruptions to large caldera-forming events. Our data reveal that the most recent eruption of Monte Nuovo is characterized by highly differentiated magmas akin to those that fed the pre-caldera activity and the initial phases of the caldera-forming eruptions. We suggest that this eruption is an expression of a state shift in magma storage conditions, whereby substantial amounts of volatiles start to exsolve in the shallow reservoir. The presence of an exsolved gas phase has fundamental consequences for the physical properties of the reservoir and may indicate that a large magma body is currently accumulating underneath Campi Flegrei.
机译:理解控制上地壳中大型硅质岩浆体堆积的机制,是确定火山形成火山口形成喷发潜力的关键。弗莱格里营地位于地球上人口最稠密的地区之一,是一座活泼不安的火山,在过去的60,000年中,该火山曾两次形成火山口形成火山喷发和许多次较小的喷发事件。在这里,我们将广泛的岩石学调查结果与热力学模型相结合,以研究岩浆系统如何从频繁的小喷发转变为大的破火山口事件。我们的数据表明,最近爆发的蒙特诺沃火山爆发的特征是岩浆高度分化,类似于那些滋生了破火山口活动和火山爆发形成初期的岩浆。我们认为这种喷发是岩浆储存条件下状态转变的一种表达,由此大量的挥发物开始在浅层储层中溶解。溶解的气相的存在对储层的物理性质具有根本性的影响,并且可能表明一个大的岩浆体目前正聚集在Campi Flegrei下。

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