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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >3-D multiobservable probabilistic inversion for the compositional and thermal structure of the lithosphere and upper mantle: III. Thermochemical tomography in the Western-Central US
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3-D multiobservable probabilistic inversion for the compositional and thermal structure of the lithosphere and upper mantle: III. Thermochemical tomography in the Western-Central US

机译:岩石圈和上地幔的成分和热力结构的3-D多观测概率反演:III。美国中西部的热化学层析成像

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摘要

We apply a novel 3-D multiobservable probabilistic tomography method that we have recently developed and benchmarked, to directly image the thermochemical structure of the Colorado Plateau and surrounding areas by jointly inverting P wave and S wave teleseismic arrival times, Rayleigh wave dispersion data, Bouguer anomalies, satellite-derived gravity gradients, geoid height, absolute (local and dynamic) elevation, and surface heat flow data. The temperature and compositional structures recovered by our inversion reveal a high level of correlation between recent basaltic magmatism and zones of high temperature and low Mg# (i.e., refertilized mantle) in the lithosphere, consistent with independent geochemical data. However, the lithospheric mantle is overall characterized by a highly heterogeneous thermochemical structure, with only some features correlating well with either Proterozoic and/or Cenozoic crustal structures. This suggests that most of the present-day deep lithospheric architecture reflects the superposition of numerous geodynamic events of different scale and nature to those that created major crustal structures. This is consistent with the complex lithosphere-asthenosphere system that we image, which exhibits a variety of multiscale feedback mechanisms (e.g., small-scale convection, magmatic intrusion, delamination, etc.) driving surface processes. Our results also suggest that most of the present-day elevation in the Colorado Plateau and surrounding regions is the result of thermochemical buoyancy sources within the lithosphere, with dynamic effects (from sublithospheric mantle flow) contributing only locally up to similar to 15-35%.
机译:我们应用了我们最近开发和基准化的一种新颖的3-D多观测概率层析成像方法,通过联合反转P波和S波远震到达时间,瑞利波频散数据,布格尔来直接成像科罗拉多高原及周边地区的热化学结构异常,卫星衍生的重力梯度,大地水准面高度,绝对(局部和动态)高程以及地表热流数据。通过我们的反演得到的温度和成分结构揭示了近来的玄武岩浆作用与岩石圈中高温和低Mg#的区域之间的高度相关性(即被转换的地幔),这与独立的地球化学数据一致。但是,岩石圈地幔的总体特征是高度非均质的热化学结构,只有一些特征与元古代和/或新生代地壳结构密切相关。这表明当今大多数深层岩石圈建筑都反映了许多规模和性质与形成主要地壳结构的地质动力学事件的叠加。这与我们所成像的复杂的岩石圈-软流圈系统一致,该系统表现出多种多尺度的反馈机制(例如小尺度对流,岩浆侵入,分层等)来驱动地表过程。我们的研究结果还表明,科罗拉多高原及其周边地区目前的大部分海拔升高是岩石圈内热化学浮力源的结果,动力作用(来自岩下圈地幔流)仅在局部贡献高达15-35% 。

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