Constraining the crustal composition of the continental U.S. using seismic observables

GSA Bulletin Pub Date : 2022-12-05 DOI:10.1130/b36229.1
S. Sui, W. Shen, K. Mahan, V. Schulte‐Pelkum
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引用次数: 4

Abstract

The composition of the crust is one of the most uncertain and controversial components of continental estimates due to (1) limited direct access and (2) inconsistent indirect assessments. Here we show that by combining high-resolution shear velocity (Vs) models with newly measured with newly measured ratio of compressional wave velocity (Vp) and Vs, or Vp/Vs ratio, for the crystalline crust, a 3-D composition (SiO2 wt%) model of the continental crust can be derived with uncertainty estimates. Comparing the model with local xenolith data shows consistency at mid and lower crustal depths. The spatial patterns in bulk SiO2 content correlate with major geological provinces, including the footprints of Cenozoic and Mesozoic mafic volcanism in the western U.S., and offer new insight into the composition and evolution of the continental U.S.
利用地震观测资料限制美国大陆的地壳组成
由于(1)有限的直接获取和(2)不一致的间接评估,地壳的组成是大陆估计中最不确定和最有争议的组成部分之一。本文表明,通过将高分辨率剪切速度(Vs)模型与新测量的结晶地壳纵波速度(Vp)和Vs的比值(Vp /Vs比值)相结合,可以在不确定估计的情况下推导出大陆地壳的三维成分(SiO2 wt%)模型。将该模型与当地捕虏体资料进行比较,显示出中、下地壳深度的一致性。整体SiO2含量的空间格局与美国西部新生代和中生代基性火山活动的足迹等主要地质省相关联,为美国大陆的组成和演化提供了新的认识
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