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Frequency and magnitude of volcanic eruptions controlled by magma injection and buoyancy

机译:岩浆注入和浮力控制的火山喷发的频率和大小

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摘要

Super-eruptions are extremely rare events. Indeed, the global frequency of explosive volcanic eruptions is inversely proportional to the volume of magma released in a single event~(1,2). The rate of magma supply, mechanical properties of the crust and magma, and tectonic regime are known to play a role in controlling eruption frequency and magnitude~(3–7), but their relative contributions have not been quantified. Here we use a thermomechanical numerical model of magma injection into Earth’s crust and Monte Carlo simulations to explore the factors controlling the recurrence rates of eruptions of different magnitudes. We find that the rate of magma supply to the upper crust controls the volume of a single eruption. The time interval between magma injections into the subvolcanic reservoir, at a constant magma-supply rate, determines the duration of the magmatic activity that precedes eruptions. Our simulations reproduce the observed relationship between eruption volume and magma chamber residence times and replicate the observed correlation between erupted volumes and caldera dimensions~(8,9). We also find that magma buoyancy is key to triggering super-eruptions, whereas pressurization associated with magma injection is responsible for relatively small and frequent eruptions. Our findings help improve our ability to decipher the long-term activity patterns of volcanic systems.
机译:超级喷发是极为罕见的事件。确实,爆发性火山喷发的整体频率与单个事件中释放的岩浆量成反比(1,2)。已知岩浆供应的速率,地壳和岩浆的力学特性以及构造形式在控制喷发频率和幅度〜(3-7)中起着作用,但是它们的相对贡献尚未被量化。在这里,我们使用岩浆注入地壳的热力学数值模型和蒙特卡罗模拟研究了控制不同幅度喷发复发率的因素。我们发现上地壳的岩浆供应速率控制着一次喷发的量。以恒定的岩浆供应速率将岩浆注入次火山岩储层之间的时间间隔决定了喷发之前岩浆活动的持续时间。我们的模拟再现了观测到的喷发量与岩浆室停留时间之间的关系,并复制了观测到的喷发量与火山口尺寸〜(8,9)之间的相关性。我们还发现,岩浆浮力是引发超喷发的关键,而与岩浆注入有关的增压是相对较小且频繁喷发的原因。我们的发现有助于提高我们破译火山系统长期活动模式的能力。

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