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Stress inversions to forecast magma pathways and eruptive vent location

机译:逆转应力以预测岩浆通道和喷发口位置

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When a batch of magma reaches Earth’s surface, it forms a vent from which volcanic products are erupted. At many volcanoes, successive batches may open vents far away from previous ones, resulting in scattered, sometimes seemingly random spatial distributions. This exposes vast areas to volcanic hazards and makes forecasting difficult. Here, we show that magma pathways and thus future vent locations may be forecast by combining the physics of magma transport with a Monte Carlo inversion scheme for the volcano stress history. We validate our approach on a densely populated active volcanic field, Campi Flegrei (Italy), where we forecast future vents on an onshore semiannular belt located between 2.3 and 4.2 km from the caldera center. Our approach offers a mechanical explanation for the vent migration over time at Campi Flegrei and at many calderas worldwide and may be applicable to volcanoes of any type.
机译:当一批岩浆到达地球表面时,它形成了一个喷口,火山产品从喷口中喷出。在许多火山中,相继的批次可能会打开远于先前火山的喷口,从而导致分散的,有时看似随机的空间分布。这使广大地区遭受火山灾害的影响,使预报工作变得困难。在这里,我们表明,通过将岩浆运移的物理过程与蒙特卡洛反演方案相结合,可以预测岩浆通道,进而预测未来的出风口位置,以了解火山的应力历史。我们在人口稠密的活火山场Campi Flegrei(意大利)上验证了我们的方法,我们在该火山场上预测了距火山口中心2.3至4.2公里之间的陆上半环形带的未来喷口。我们的方法为Campi Flegrei和全球许多破火山口随时间的迁移提供了机械的解释,并且可能适用于任何类型的火山。

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