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Geological relationship between Anyui Metamorphic Complex and Samarka terrane, Far East Russia

机译:俄罗斯远东地区安义变质复合体与撒马尔罕地体之间的地质关系

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摘要

The Anyui Metamorphic Complex (AMC) of Cretaceous age is composed of metachert, schist, gneiss, migmatite and ultramafic rocks, and forms a dome structure within the northernmost part of the Jurassic accretionary complex of the Samarka terrane. The two adjacent geological units are bounded by a fault, but the gradual changes of grain size and crystallinity index of quartz in chert and metachert of the Samarka terrane and the AMC, together with the gradual lithological change, indicate that at least parts of the AMC are metamorphic equivalents of the Samarka rocks. Radiolarian fossils from siliceous mudstone of the Samarka terrane indicates Tithonian age (uppermost Jurassic), and hence, form a slightly later accretion. This signifies that the accretionary complex in the study area is one of the youngest tectonostratigraphic units of the Samarka terrane. The relationship between the Samarka terrane and AMC, as well as their ages and lithologies, are similar to those of the Tamba-Mino-Ashio terrane and Ryoke Metamorphic Complex in southwest Japan. In both areas the lower (younger) part of the Jurassic accretionary complexes were intruded and metamorphosed by Late Cretaceous granitic magma. Crustal development of the Pacific-type orogen has been achieved by the cycle of: (i) accretion of oceanic materials and turbidites derived from the continent; and (ii) granitic intrusion by the next subduction and accretion events, accompanied by formation of high T/P metamorphic complexes.
机译:白垩纪的安义变质复合体(AMC)由变质岩,片岩,片麻岩,辉辉岩和超镁铁质岩石组成,在撒马尔罕地层侏罗纪增生复合体的最北部形成了穹顶结构。相邻的两个地质单元均以断层为界,但萨马卡山脉和AMC的t石和后cher石中石英的晶粒度和结晶度的逐渐变化以及逐渐的岩性变化表明,至少有一部分AMC是Samarka岩石的变质等价物。撒马尔罕地体的硅质泥岩中的放射虫化石表明了提通纪(最高侏罗纪),因此形成了稍晚的积聚。这表明该研究区的增生复合体是萨马岗地貌中最年轻的构造地层单元之一。 Samarka地貌与AMC之间的关系以及它们的年龄和岩性与日本西南部的Tamba-Mino-Ashio地貌和Ryoke变质综合体相似。在这两个地区,晚白垩纪花岗岩岩浆侵入并变质了侏罗纪增生复合物的下部(较年轻)。太平洋型造山带的地壳发育是通过以下循环实现的:(i)积聚了来自该大陆的海洋物质和浊积石; (ii)下次俯冲和增生事件引起的花岗岩侵入,并伴有高T / P变质复合物的形成。

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