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首页> 外文期刊>International Geology Review >Heat flow and destabilized cratons: a comparative study of the North China, Siberian, and Wyoming cratons
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Heat flow and destabilized cratons: a comparative study of the North China, Siberian, and Wyoming cratons

机译:热流和不稳定的粪便:华北,西伯利亚和怀俄明州克拉顿的比较研究

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摘要

Heat has a close relation to cratonic stability. We reconstructed the thermal history of the eastern North China, Wyoming, and Siberian cratons by using xenolith and thermal indicator data, and then the thermal lithospheric thickness in geological time was calculated by combining the crustal structural and thermal parameters. Researches from three cratons demonstrate that heat-flow values of the eastern North China Craton (eNCC) and Wyoming Craton (WC) have increased exceeding 20 mW/m2 in the Meso-Cenozoic and the thermal lithospheric thickness has decreased by > 100 km because of the cratonic destabilization. However, the thermal history variation of the Siberian Craton (SC) is small, similar to 5 mW/m(2), the lithosphere has remained stable and it has experienced relatively little lithospheric thinning <100 km. The differences of the cratonic thermal regime are related to the breakup of the Pangea supercontinent. Destabilized cratons on active continental margin are directly affected by plate subduction. Stable cratons in the interior of the supercontinents are directly affected by the upwelling of superplumes and that may result in lithospheric thinning. Differences in the thermal evolutions of cratons provide new geothermal evidence for the different thermal regimes associated with the breakup of the Pangea supercontinent.
机译:热量与克拉基稳定性密切相关。我们通过使用XenoLith和热指示器数据重建了东北,怀俄明和西伯利亚克拉顿的热历史,然后通过组合地壳结构和热参数来计算地质时间的热岩体厚度。来自三个克拉顿的研究表明,中西古(ENCC)和Wyoming Craton(WC)的热流量增加超过20mW / m2,在中生型中生成,由于其中100公里,热岩体厚度降低了20mW / m 2。克拉廷稳定化。然而,西伯利亚CRATON(SC)的热历史变化很小,类似于5 MW / m(2),岩石圈保持稳定,经历了相对较小的岩石薄薄薄荷<100公里。克拉特热政权的差异与Pangea超镇痛的分解有关。积极的大陆边缘的不稳定的Cratons直接受到板砖俯冲的影响。超强坦非脾脏内部的稳定碎屑直接受超级升高的升高影响,并且可能导致岩石薄膜变薄。 CRATONS热量演进的差异为与Pangea的分解相关的不同热量制度提供了新的地热证据。

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