断裂历史对大陆内断裂-反转造山带结构风格的影响

Geology Pub Date : 2024-03-01 DOI:10.1130/g51489.1
Dylan A. Vasey, J. Naliboff, Eric Cowgill, Sascha Brune, A. Glerum, Frank Zwaan
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引用次数: 0

摘要

尽管许多碰撞造山带是在两个大陆之间的大洋岩石圈发生俯冲作用后形成的,但有些造山带则是通过大陆裂陷遗留下来的构造反转,在大陆内部形成应变局部。大陆内部的裂谷-反转造山运动表现出一系列的构造风格,但这种变化的根本原因尚未得到广泛的探讨。我们利用大陆内部裂谷反演的数值模型来研究裂谷结构、裂谷持续时间、裂谷后冷却和汇聚速度等参数对造山带结构的影响。我们的模型再现了断裂反演造山运动的自然变异,并可按三种末端类型进行分类:非对称欠推移(AU)、分布式增厚(DT)和局部极性翻转(PF)。狭窄断裂的逆转往往比宽断裂产生的造山运动具有更多的局部变形(AU 和 PF 型)。然而,我们研究的多种参数组合可以产生相同的构造样式。因此,我们的模型表明,造山结构与反演前和反演过程中的条件之间没有独特的关系。由于裂谷反演造山运动的风格在很大程度上取决于反演之前的裂谷历史,因此了解裂谷反演之前的地质历史对于将造山结构转化为产生该结构的过程至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of rift history on the structural style of intracontinental rift-inversion orogens
Although many collisional orogens form after subduction of oceanic lithosphere between two continents, some orogens result from strain localization within a continent via inversion of structures inherited from continental rifting. Intracontinental rift-inversion orogens exhibit a range of structural styles, but the underlying causes of such variability have not been extensively explored. We use numerical models of intracontinental rift inversion to investigate the impact of parameters including rift structure, rift duration, post-rift cooling, and convergence velocity on orogen structure. Our models reproduce the natural variability of rift-inversion orogens and can be categorized using three endmember styles: asymmetric underthrusting (AU), distributed thickening (DT), and localized polarity flip (PF). Inversion of narrow rifts tends to produce orogens with more localized deformation (styles AU and PF) than those resulting from wide rifts. However, multiple combinations of the parameters we investigated can produce the same structural style. Thus, our models indicate no unique relationship between orogenic structure and the conditions prior to and during inversion. Because the style of rift-inversion orogenesis is highly contingent upon the rift history prior to inversion, knowing the geologic history that preceded rift inversion is essential for translating orogenic structure into the processes that produced that structure.
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