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Active foundering of a continental arc root beneath the southern Sierra Nevada in California

机译:在加利福尼亚内华达山脉南部下方积极建立大陆弧根

摘要

Seismic data provide images of crust–mantle interactions during ongoing removal of the dense batholithic root beneath the southern Sierra Nevada mountains in California. The removal appears to have initiated between 10 and 3 Myr ago with a Rayleigh–Taylor-type instability, but with a pronounced asymmetric flow into a mantle downwelling (drip) beneath the adjacent Great Valley. A nearly horizontal shear zone accommodated the detachment of the ultramafic root from its granitoid batholith. With continuing flow into the mantle drip, viscous drag at the base of the remaining ~35-km-thick crust has thickened the crust by ~7 km in a narrow welt beneath the western flank of the range. Adjacent to the welt and at the top of the drip, a V-shaped cone of crust is being dragged down tens of kilometres into the core of the mantle drip, causing the disappearance of the Moho in the seismic images. Viscous coupling between the crust and mantle is therefore apparently driving present-day surface subsidence.
机译:地震数据提供了在加利福尼亚内华达山脉南部山脉下方不断清除致密的岩基的过程中地壳-地幔相互作用的图像。清除工作似乎是在10 Myr和3 Myr之前开始的,其原因是瑞利-泰勒式不稳定,但在邻近的大山谷下方有明显的不对称流动进入地幔下涌(滴灌)。一个近乎水平的剪切带适应了超镁铁质根部从其花岗岩基岩上的脱离。随着不断流入地幔滴,剩余的约35公里厚的地壳底部的粘性阻力使该地壳西侧下方的狭缝中的地壳增厚了约7公里。紧靠贴边和滴头顶部,一个V形的地壳被向下拖曳数十公里到地幔滴头的核心,导致地震图像中的莫霍面消失。因此,地壳与地幔之间的粘性耦合显然正在推动当今的地面沉降。

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