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Seismic evidence for a possible deep crustal hot zone beneath Southwest Washington

机译:华盛顿西南部可能存在的深地壳热区的地震证据

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摘要

Crustal pathways connecting deep sources of melt and the active volcanoes they supply are poorly understood. Beneath Mounts St. Helens, Adams, and Rainier these pathways connect subduction-induced ascending melts to shallow magma reservoirs. Petrogenetic modeling predicts that when these melts are emplaced as a succession of sills into the lower crust they generate deep crustal hot zones. While these zones are increasingly recognized as a primary site for silicic differentiation at a range of volcanic settings globally, imaging them remains challenging. Near Mount Rainier, ascending melt has previously been imaged ~28 km northwest of the volcano, while to the south, the volcano lies on the margin of a broad conductive region in the deep crust. Using 3D full-waveform tomography, we reveal an expansive low-velocity zone, which we interpret as a possible hot zone, linking ascending melts and shallow reservoirs. This hot zone may supply evolved magmas to Mounts St. Helens and Adams, and possibly Rainier, and could contain approximately twice the melt volume as the total eruptive products of all three volcanoes combined. Hot zones like this may be the primary reservoirs for arc volcanism, influencing compositional variations and spatial-segmentation along the entire 1100 km-long Cascades Arc.
机译:人们很少了解连接深层熔体源和它们提供的活火山的地壳路径。在圣海伦斯山,亚当斯和雷尼尔山下,这些途径将俯冲引起的上升熔体连接到浅层岩浆储层。岩石成因模型预测,当这些熔体作为一连串的基石进入下地壳时,它们会产生深的地壳热区。尽管这些地区在全球范围内的一系列火山环境中已被广泛认为是硅质分化的主要场所,但对它们进行成像仍然具有挑战性。在雷尼尔山附近,以前曾在火山西北部约28 km处拍摄到上升的熔体,而在南部,火山位于地壳深处一个宽广的导电区域的边缘。使用3D全波形层析成像技术,我们发现了一个广阔的低速带,我们将其解释为可能的高温带,将上升的熔体和浅层储​​层联系起来。这个热区可能向圣海伦斯山和亚当斯山,甚至可能是雷尼尔山提供演化的岩浆,并且可能包含的熔体体积大约是这三座火山的总喷发产物的两倍。像这样的热区可能是弧形火山作用的主要储层,影响了整个1100 km长的喀斯喀特弧上的成分变化和空间分段。

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