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Rift topography linked to magmatism at the intermediate spreading Juan de Fuca Ridge

机译:在中间扩散的胡安德富卡岭的裂谷地形与岩浆作用有关

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摘要

New seismic observations of crustal structure along the Juan de Fuca Ridge indicate that the axial rift topography reflects magma-induced deformation rather than alternating phases of magmatism and tectonic extension, as previously proposed. Contrary to predictions of the episodic models, crustal magma bodies are imaged beneath portions of all ridge segments surveyed at average depths of 2.1-2.6 km. The shallow rift valley or axial graben associated with each Juan de Fuca segment is similar to 50-200 m deep and 1-8 km wide and is well correlated with a magma body in the subsurface. Analysis of graben dimensions (height and width) shows that the axial graben narrows and graben height diminishes where the magma body disappears, rather than deepening and broadening, as expected for rift topography due to tectonic extension. We propose an evolutionary model of axial topography that emphasizes the contribution of dike intrusion to subsidence and fault slip at the seafloor. In this model an evolving axial topography results from feedbacks between the rheollogy of the crust above a magma sill and dike intrusion, rather than episodic magma delivery from the mantle.
机译:沿胡安德富卡山脊的地壳结构的新地震观测表明,轴向裂谷地形反映的是岩浆诱发的变形,而不是如先前提出的岩浆作用和构造伸展的交替相。与情景模型的预测相反,地壳岩浆体被成像在平均深度为2.1-2.6 km的所调查的所有山脊段的下面。与每个胡安德富卡河段有关的浅裂谷或轴向grab陷类似于深50-200 m,宽1-8 km,并且与地下岩浆体有很好的相关性。对grab石尺寸(高度和宽度)的分析表明,轴向岩en变窄,grab岩高度减小,岩浆体消失的地方,而不是由于构造扩展而导致的裂谷地形所期望的加深和扩大。我们提出了一种轴向地形学的演化模型,该模型强调了堤防侵入对海底沉降和断层滑动的贡献。在该模型中,不断演变的轴向地形是由岩浆基岩上方的地壳流变学与堤防侵入之间的反馈产生的,而不是由地幔的偶发性岩浆输送引起的。

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