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Continental crustal growth and the supercontinental cycle: evidence from the Central Asian Orogenic Belt

机译:大陆地壳生长和超大陆周期:中亚造山带的证据

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Studies of supercontinental cycle are mainly concentrated on the assembly, breakup and dispersal of supercontinents, and studies of continental crustal growth largely on the growth and loss (recycling) of the crust. These two problems have long been studied separately from each other. The Paleozoic-Mesozoic granites in the Central Asian Orogenic Belt have commonly positive εNd values, implying large-scale continental crustal growth in the Phanerozoic. They coincided temporally and spatially with the Phanerozoic Pangea supercontinental cycle, and overlapped in space with the P-wave high- V anomalies and calculated positions of subducted slabs for the last 180 Ma, all this suggests that the Phanerozoic Laurasia supercontinental assembly was accompanied by large-scale continental crustal growth in central Asia. Based on these observations, this paper proposes that there may be close and original correlations between a supercontinental cycle, continental crustal growth and catastrophic slab avalanches in the mantle. In this model we suggest that rapid continental crustal growth occurred during supercontinent assembly, whereas during supercontinental breakup and dispersal new additions of the crust were balanced by losses, resulting in a steady state system. Supercontinental cycle and continental crustal growth are both governed by changing patterns of mantle convection.
机译:对超大陆循环的研究主要集中在超大陆的组装,破裂和扩散上,而对大陆地壳生长的研究则主要针对地壳的生长和损失(再循环)。长期以来,这两个问题是彼此分开研究的。中亚造山带的古生代-中生代花岗岩通常具有正的εNd值,这意味着古生代大规模的大陆地壳生长。它们在时间和空间上与古生代Pangea超大陆周期相吻合,并且在空间上与P波高V异常重叠,并且计算了最后180 Ma俯冲板块的位置,所有这些都表明,古生代Laurasia超大陆组件伴随着大型的中亚大陆规模的地壳生长。基于这些观察,本文提出超大陆周期,大陆地壳生长和地幔中的灾难性平板雪崩之间可能存在着紧密而原始的关联。在该模型中,我们建议在超大陆组装过程中发生快速的大陆壳增长,而在超大陆破裂和扩散过程中,地壳的新添加物被损失平衡,从而形成一个稳定的系统。超大陆周期和大陆地壳的增长都受地幔对流模式变化的支配。

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