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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Organization of volcanic plumbing through magmatic lensing by magma chambers and volcanic loads
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Organization of volcanic plumbing through magmatic lensing by magma chambers and volcanic loads

机译:岩浆室和火山负荷通过岩浆透镜组织的火山管道

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摘要

The development of discrete volcanic centers reflects a focusing of magma ascending from the source region to the surface. We suggest that this organization occurs via mechanical interactions between magma chambers, volcanic edifices, and dikes and that the stresses generated by these features may localize crustal magma transport before the first eruption occurs. We develop a model for the focusing or "lensing" of rising dikes by magma chambers beneath a free surface, and we show that chambers strongly modulate dike focusing by volcanic edifices. We find that the combined mechanical effects of chambers, edifice loading, and dike propagation are strongly coupled. Chambers deeper than 20 km below the surface with magmatic overpressure in the range of 20 100 MPa should dominate dike focusing, while more shallow systems are affected by both edifice and chamber focusing.
机译:离散火山中心的发展反映了从源区到地表的岩浆集中。我们认为,这种组织是通过岩浆室,火山构造和堤防之间的机械相互作用而发生的,并且由这些特征产生的应力可能在第一次喷发发生之前就将地壳的岩浆运移定位了。我们开发了一个模型,用于通过自由表面下的岩浆室对上升的堤防进行聚焦或“透镜对准”,并且我们显示了这些室通过火山建筑物强烈地调节了堤防的聚集。我们发现,密室的机械作用,建筑物的荷载和堤防的传播是紧密耦合的。在地表以下20 km以下的深处,岩浆超压在20 100 MPa的范围内,应主导堤防聚焦,而较浅的系统则受建筑物和内室聚焦的影响。

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