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The orogenic superstructure-infrastructure concept: Revisited, quantified, and revived

机译:造山上部结构-基础结构的概念:重新审视,量化和复兴

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摘要

The historical superstructure-infrastructure concept (S-I) expressed contrasts in structural style and metamorphic grade between shallow and deep orogenic levels. Two-dimensional thermal-mechanical models provide a quantitative explanation in terms of progressive crustal shortening and thickening (phase 1), thermal relaxation and rheological weakening (phase 2), and ductile flow at depth (phase 3). Results predict an upper-crustal superstructure, dominated by early steep structures, separated across a subhorizontal high-strain zone from a ductile infrastructure with late gently dipping structures; this is consistent with observations from the western Superior Province. These models can account for contrasts in structural style, metamorphic grade, seismic reflectivity, and age between upper- and lower-crustal levels. In contrast to conventional thrust-tectonics models, the revived S-I model shows how young structures can form beneath older ones during progressive convergence, thereby encouraging reassessment of standard seismic reflection interpretations.
机译:历史上层建筑-基础设施概念(S-I)在浅造山带和深造山带之间的构造样式和变质等级上形成了对比。二维热力学模型就地壳渐进缩短和增厚(阶段1),热松弛和流变弱化(阶段2)以及深度下的延性流(阶段3)提供了定量的解释。结果表明,上地壳上部结构以早期的陡峭结构为主导,横跨延展性基础设施,横跨水平下高应变区,后期缓慢地浸入结构。这与西部上级省的观察结果一致。这些模型可以解释结构样式,变质等级,地震反射率以及上地壳与下地壳之间的年龄之间的对比。与传统的逆冲构造模型相比,恢复后的S-I模型显示了在渐进式收敛过程中年轻结构如何在较旧结构之下形成,从而鼓励对标准地震反射解释进行重新评估。

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