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首页> 外文期刊>International Geology Review >Major Constituents of the Dabie Collisional Orogenic Belt and Partial Melting in the Ultrahigh-Pressure Unit
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Major Constituents of the Dabie Collisional Orogenic Belt and Partial Melting in the Ultrahigh-Pressure Unit

机译:大高压碰撞造山带的主要成分和超高压单元的部分熔融

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The present constitution and architecture of the Dabieshan orogenic belt is the combined result of Triassic subduction collision, extensional tectonics postdating the HP and UHP metamorphism, and thermo-tectonic evolution in Mesozoic-Cenozoic time. In addition to Yanshanian and post-Yanshanian magmatic intrusion, volcanic eruption, and basin deposition, lithotectonic constituents of the Dabie orogenic belt consist mainly of a core complex (CC) unit, an UHP unit, an HP unit, an epidote-blueschist (EBS) unit, and a sedimentary cover (SC) unit. Minor mafic-ultramafic plutons were intruded into or preserved within the CC. UHP, HP, or EBS units. Slices of UHP, HP, and CBS units are progressively sandwiched between the underlying core complex and the overlying sedimentary cover. The distribution of lithotectonic units is controlled by an extensional tectonic framework, which postdates the collisional event. The tectonic pattern of the Dabieshan orogenic belt as a whole is characterized by a general doming, with the development of multi-layered detachment zones.The study of partial melting associated with decompressive retrogression in the UHP unit during exhumation of the eclogites provides us with a better understanding of the relationship between eclogites and the surrounding country rock (so-called UHP gneisses), and the foliated garnet-bearing granites (the non-HP country rocks). It supports the "in situ" interpretation. Anatexis occurred under conditions of amphibolite-facies metamorphism at lower to middle crustal levels. This partial melting associated with decompression is one of the most important physico-chemical processes that postdate the collisional event in the Dabieshan. It signaled the evolution of the deformation regime from compression to extension, and reflected thinning of the continental crust and rapid uplift of UHP metamorphic rocks to middle to lower crustal levels by regional-scale extension.
机译:大别山造山带目前的构造和构造是三叠纪俯冲碰撞,HP和UHP变质作用之后的伸展构造,以及中,新生代热构造演化的综合结果。除了燕山期和燕山期以后的岩浆侵入,火山喷发和盆地沉积外,大别造山带的岩相构造成分主要包括一个核心复合体(CC)单元,一个UHP单元,一个HP单元,一个显性蓝粉岩(EBS) )单元和一个沉积物覆盖层(SC)单元。将较小的铁镁质超音波小行星插入CC中或保存在CC中。 UHP,HP或EBS单位。 UHP,HP和CBS单元的切片逐渐夹在下面的岩心复合体和上面的沉积物覆盖层之间。岩石构造单元的分布由伸展构造框架控制,该构造构造可追溯到碰撞事件的发生。大别山造山带的总体构造特征是总体呈隆起状,并伴有多层分离带的发展。研究了在榴辉岩发掘过程中UHP单元减压逆行相关的部分熔融现象,为我们提供了一个认识上的认识。更好地了解榴辉岩与周围的乡村岩石(所谓的UHP片麻岩)和带叶石榴石的花岗岩(非HP的乡村岩石)之间的关系。它支持“原位”解释。食蚁动物发生在低至中地壳水平的闪石相变质条件下。与减压有关的这种部分融化是大别山发生碰撞事件之后最重要的物理化学过程之一。它标志着变形过程从压缩到伸展的演变,并反映了地壳变薄和UHP变质岩迅速隆升到区域范围扩展的中低地壳水平。

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