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首页> 外文期刊>Journal of geodynamics >Propagated rifting in the Southwest Sub-basin, South China Sea: Insights from analogue modelling
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Propagated rifting in the Southwest Sub-basin, South China Sea: Insights from analogue modelling

机译:南海西南子盆地的传播裂谷:模拟建模的启示

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How the South China Sea rifted has long been a puzzling question that is still debated, particularly with reference to the Southwest Sub-basin (SWSB). Analogue modelling remains one of the most useful tools for testing rift models and processes. Here, we present and discuss a series of analogue modelling experiments designed to investigate the rifting process of the SWSB. Convincing geophysical results were compiled to provide realistic constraints to test the experimental results and interpretations. A heterogeneous lithosphere model with a varied lithospheric structure showed tectono-morphological features similar to the natural case of the SWSB, indicating that the initial thermal condition and rheological stratification of the lithosphere should have a dominant effect on the rifting process of the SWSB. Rigid tectonic blocks existed in the continental margin, such as the Macclesfield Bank and the Reed Bank, and they played important roles in both the shaping of the continent-ocean boundary and the coupling between the crust and mantle. The initial thermal condition and rheological stratification of the lithosphere under the South China Sea controlled the propagated rifting process of the SWSB. Extension was centred on the deep troughs between the rigid blocks, and the break-up occurred in these areas between them. The westward rifting propagation is best explained with a heterogeneous lithosphere model characterized by varied lithospheric structure, and it was responsible for producing the V-shaped configuration of the SWSB. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:长期以来,如何分裂南中国海一直是一个令人费解的问题,尤其是有关西南子流域(SWSB)的问题。模拟建模仍然是测试裂痕模型和过程的最有用工具之一。在这里,我们介绍并讨论一系列旨在研究SWSB裂谷过程的模拟建模实验。收集了令人信服的地球物理结果,以提供现实的约束条件来测试实验结果和解释。具有变化的岩石圈结构的非均质岩石圈模型显示出与SWSB的自然情况相似的构造形态特征,表明岩石圈的初始热条件和流变分层应对SWSB的裂谷作用起主要作用。刚性构造块体存在于大陆边缘,例如麦克尔斯菲尔德河岸和里德河岸,它们在大陆-海洋边界的形成以及地壳与地幔之间的耦合中都起着重要作用。南海海域岩石圈的初始热力条件和流变分层控制了西南海盆地的扩展裂谷作用。延伸集中在刚性块之间的深槽上,并且破裂发生在刚性块之间的这些区域中。用不同岩石圈结构特征的非均质岩石圈模型可以最好地解释向西的裂谷传播,它是造成西南海盆地的V形构造的原因。 (C)2016作者。由Elsevier Ltd.发布

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