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首页> 外文期刊>International Geology Review >Designating tectonostratigraphic terranes versus mapping rock units in subduction complexes: perspectives from the Franciscan Complex of California, USA
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Designating tectonostratigraphic terranes versus mapping rock units in subduction complexes: perspectives from the Franciscan Complex of California, USA

机译:在俯冲复合体中指定构造地层与制图岩石单位:来自美国加利福尼亚的方济各会复合体的观点

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摘要

Accretionary complex histories are broadly understood. Sedimentation in seafloor and trench environments on drifting subducting plates and in associated trenches, followed by (1) deformation and metamorphism in the subduction zone and (2) subsequent uplift at the overriding plate edge, result in complicated stratigraphic and structural sequences in accretionary complexes. Recognizing, defining, and designating individual terranes in subduction complexes clarify some of these complicated relationships within the resulting continent-scale orogenic belts. Terrane designation does not substitute for detailed stratigraphic and structural mapping. Stratigraphic and structural mapping, combined with radiometric and palaeontologic dating, are necessary for delineation of coherent, broken, and dismembered formations, and various melange units, and for clarification of the details of subduction complex architecture and history. The Franciscan Complex is a representative subduction complex that has evolved through sedimentation, faulting, folding, and low-temperature metamorphism, followed by uplift, associated deformation, and later overprinted deformation. Many belts of Franciscan rocks are offset by strike-slip faults associated with the dextral San Andreas Fault System. In the Franciscan Complex, among the terrane names applied widely, are the 'Yolla Bolly Terrane' and the 'Central Terrane'. Where detailed mapping and detrital zircon ages exist, data reveal that the two names have been applied to rocks of similar general character and age. In the northeastern Diablo Range, Franciscan Complex rocks include coherent units, broken and dismembered formations, and various types of melanges, all assigned at various times to the Yolla Bolly and other terranes. The details of stratigraphic and structural history revealed by large-scale mapping and radiometric dating prove to be more useful in clarifying the accretionary complex history than assigning a terrane name to the rocks. That history will assist in resolving terrane assignment issues and allow discrimination of subduction-associated and post-subduction events, essential for understanding the overall history of the orogen.
机译:增生性复杂的历史被广泛理解。在海底和海沟环境中,漂移的俯冲板块和相关海槽中发生沉积,然后(1)俯冲带的变形和变质作用以及(2)随后在上覆板块边缘隆起,导致增生复合物中的地层和结构序列复杂。识别,定义和指定俯冲复合物中的单个地层,可以澄清由此产生的大陆尺度造山带中的一些复杂关系。地形名称不能替代详细的地层和结构图。地层和结构图,结合放射和古生物学测年法,对于划定连贯的,破碎的和肢解的地层以及各种混杂单元,以及弄清俯冲复杂构造和历史的细节是必要的。方济各会的群是具有代表性的俯冲群,它是通过沉积,断层,褶皱和低温变质作用演变而成的,随后是隆升,伴随的变形以及后来的套印变形。方济各会岩石的许多带被与右手圣安德烈亚斯断层系统有关的走滑断层所抵消。在方济各会建筑群中,“ Yolla Bolly Terrane”和“ Central Terrane”被广泛使用。在存在详细的制图和碎屑锆石年龄的地方,数据显示这两个名称已被应用于一般特征和年龄相似的岩石。在暗黑破坏神山脉的东北部,方济各会情结的岩石包括连贯的单元,破碎且破碎的地层以及各种类型的混杂物,它们在不同的时间都分配给了Yolla Bolly和其他地层。事实证明,通过大规模制图和放射性测年可以揭示地层和构造历史的细节,比为岩石分配地名更有助于阐明增生的复杂历史。这段历史将有助于解决地层分配问题,并允许区分与俯冲有关和俯冲后的事件,这对于了解造山带的整体历史至关重要。

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