论断裂过程中地幔继承控制应变定位的延迟表现

IF 4.8 1区 地球科学 Q1 GEOLOGY Geology Pub Date : 2024-07-19 DOI:10.1130/g52309.1
F. Zwaan, D. Erratt, G. Manatschal, P. Chenin, G. Schreurs
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引用次数: 0

摘要

在本文中,我们探讨了在裂谷定位的早期阶段,地幔继承可能对岩浆贫乏的裂谷系统演化产生的相对影响。为此,我们重新审视了中生代东北大西洋及其北海子域的构造历史,通过与近期模拟构造建模工作的结果进行对比,分析了这些观测结果。我们的分析表明,最初广泛分布的裂谷盆地的形成可能是由地壳继承控制的,而随后沿更深地幔继承的局部变形可能造成了东北大西洋先前裂谷盆地趋势的叠印。只要在渐进式断裂过程中韧性地壳变薄,地幔与上地壳之间就能充分耦合,这种叠印就成为可能。重要的是,我们认为,板块构造系统的大规模重组并不会导致板块运动方向的改变,不同走向的海盆趋势相互叠印的情况也不会发生。有了这些认识,我们提出了北海裂谷运动学的最新方案,其中涉及连续的东西向板块分异,并提供了一个框架来重新思考世界各地其他裂谷系统在裂谷定位早期阶段的演变。
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On the delayed expression of mantle inheritance−controlled strain localization during rifting
In this paper, we explore the relative impact mantle inheritance can have on the evolution of magma-poor rift systems during the early stages of rift localization. To this end, we revisit the tectonic history of the Mesozoic Northeast Atlantic and its North Sea subdomain, analyzing these observations through comparison with results from recent analogue tectonic modeling work. Our analysis suggests that initial broadly distributed rift basin formation may be controlled by crustal inheritance, whereas the subsequent localization of deformation along deeper mantle inheritance may have caused the overprinting of previous rift basin trends in the Northeast Atlantic. This overprinting became possible as soon as the thinning of the ductile crust during progressive rifting allowed for sufficient coupling between the mantle and the upper crust. Importantly, we suggest that no changes in plate motion direction due to large-scale reorganization of the plate tectonic system are needed for differently oriented basin trends overprinting each other to develop. With these insights, we propose an updated scenario for rift kinematics in the North Sea involving continuous E-W plate divergence and provide a framework to rethink the evolution of other rift systems around the world during their early stages of rift localization.
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来源期刊
Geology
Geology 地学-地质学
CiteScore
10.00
自引率
3.40%
发文量
228
审稿时长
6.2 months
期刊介绍: Published since 1973, Geology features rapid publication of about 23 refereed short (four-page) papers each month. Articles cover all earth-science disciplines and include new investigations and provocative topics. Professional geologists and university-level students in the earth sciences use this widely read journal to keep up with scientific research trends. The online forum section facilitates author-reader dialog. Includes color and occasional large-format illustrations on oversized loose inserts.
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