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Volcanic plume height correlated with magmapressure change at Grímsv?tn Volcano, Iceland

机译:火山岩的高度与岩浆压力变化有关,冰岛格利姆斯火山

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Magma flow during volcanic eruptions causes surface deformation that can be used to constrain the location, geometry and internal pressure evolution of the underlying magmatic source1. The height of the volcanic plumes during explosive eruptions also varies with magma flow rate, in a nonlinear way2,3. In May 2011, an explosive eruption at Grímsv?tn Volcano, Iceland, erupted about 0:27 km~3 denserock equivalent of basaltic magma in an eruption plume that was about 20 km high. Here we use Global Positioning System (GPS) and tilt data, measured before and during the eruption at Grímsv?tn Volcano, to show that the rate of pressure change in an underlying magma chamber correlates with the height of the volcanic plume over the course of the eruption. We interpret ground deformation of the volcano, measured by geodesy, to result from a pressure drop within a magma chamber at about 1.7 km depth. We estimate the rate of magma discharge and the associated evolution of the plume height by differentiating the co-eruptive pressure drop with time. The time from the initiation of the pressure drop to the onset of the eruption was about 60 min, with about 25% of the total pressure change preceding the eruption. Near-real-time geodetic observations can thus be useful for both timely eruption warnings and for constraining the evolution of volcanic plumes.
机译:火山喷发过程中的岩浆流动会引起表面变形,可用于限制潜在岩浆源的位置,几何形状和内部压力演化1。爆炸喷发时火山羽的高度也随着岩浆流速的变化而非线性变化[2,3]。 2011年5月,冰岛Grímsv?tn火山的一次爆发喷发,在高约20 km的喷发羽中喷发了相当于玄武岩浆的0:27 km〜3致密岩。在这里,我们使用全球定位系统(GPS)和倾斜数据(在Grímsv?tn火山喷发之前和期间进行了测量)来表明,岩浆下伏层中压力变化的速率与整个过程中火山羽流的高度相关。喷发。我们解释用大地测量法来测量火山的地面变形,这是由岩浆室内约1.7 km深度的压降引起的。我们通过区分协同喷发的压降随时间的变化来估算岩浆排放的速率以及羽流高度的相关演变。从压降开始到爆发开始的时间大约为60分钟,大约是爆发前总压力变化的25%。因此,近乎实时的大地测量观测资料对于及时的喷发警告和限制火山羽的演化都可能是有用的。

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