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Scaling relationship for Vulcanian explosions derived from broadband seismic signals

机译:宽带地震信号产生的瓦肯爆炸的标度关系

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A proposed conceptual model of Vulcanian explosions describes the volcanic explosion process as consisting of two stages (the movement of the fragmented magma to the surface and a subsequent explosion) and is constrained by four source parameters inferred from broadband seismic records (the counter force of the eruption F acting in the conduit before an explosion and governing the fragmented magma movement to the surface, the time D1 of the movement of fragmented magma in the conduit before an explosion, the duration of the explosion in the conduit D_2, and the energy E of the explosion). Our paper discusses, within the framework of the proposed conceptual model, the source scaling relationship inferred from the parameters of 135 Vulcanian explosions occurring at two Mexican andesitic volcanoes: Volcan de Colima and Popocatépetl during 1996-2006. Two groups of explosions are discriminated, small (E < 1011 J) and large (E > 1011 J), characterized by a different type of scaling and origin. The scaling of the counter force F on the source duration T of the single force is different for large and small explosions but is characterized by the same tendency of F ~ T~2. According to the dependence E versus D1, large explosions are generated within the narrow depth zone in the conduit corresponding to D_1 from 3.5 to 7.5 s while small explosions are generated within a wide depth zone corresponding to D_1 from 0 to 13 s. The counter force of the eruption strongly governs the energy of explosions. The duration of the explosion at the explosion surface within the conduit, D_2, has a tendency to negatively correlate with the energy of the explosion.
机译:拟议的Vulcanian爆炸概念模型将火山爆炸过程描述为两个阶段(破碎的岩浆向地表的运动以及随后的爆炸),并受宽带地震记录推断的四个震源参数的约束(爆发前作用在导管中的喷发F并控制着碎裂岩浆向地面的运动,爆炸前导管中碎裂岩浆运动的时间D1,导管中爆炸的持续时间D_2以及能量E爆炸)。我们的论文在拟议的概念模型的框架内讨论了源于比例缩放的关系,该关系是根据1996-2006年在墨西哥安第斯两座火山Volcan de Colima和Popocatépetl上发生的135场Vulcanian爆炸的参数得出的。分为两组爆炸,小爆炸(E <1011 J)和大爆炸(E> 1011 J),其特征是不同类型的缩放和起因。对于大爆炸和小爆炸,反作用力F在单次作用力源持续时间T上的缩放比例不同,但其特征在于F〜T〜2的趋势相同。根据E对D1的依赖关系,在与D_1相对应的导管的狭窄深度区域中,从3.5到7.5 s发生了大爆炸,而在与D_1相对应的0至13 s的深度区域中,产生了小爆炸。爆发的反作用力强烈控制着爆炸的能量。管道内爆炸表面D_2处的爆炸持续时间具有与爆炸能量负相关的趋势。

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