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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >How tectonics controlled post-collisional magmatism within the Dinarides: Inferences based on study of tectono-magmatic events in the Kopaonik Mts. (Southern Serbia)
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How tectonics controlled post-collisional magmatism within the Dinarides: Inferences based on study of tectono-magmatic events in the Kopaonik Mts. (Southern Serbia)

机译:构造学如何控制Dinarides内部的碰撞后岩浆作用:基于对科帕奥尼克山构造-岩浆事件研究的推论。 (塞尔维亚南部)

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In this study, we report evidence about coupling between tectonic and magmatic processes in a complex orogenic system. The study focuses on the Kopaonik Mts. situated between the Dinarides and the Carpatho-Balkanides (Southern Serbia), and a perfect area for investigating tectono-magmatic evolution. We combine a new data set on tectonic paleostress tensors with the existing information on Cenozoic magmatic rocks in the wider Kopaonik Mts. area. The paleostress study revealed the presence of four brittle deformational phases. The established link between fault mechanism and igneous processes suggests that two large tectono-magmatic events occurred in this area. The Late Eocene-Early Miocene tectono-magmatic event was generally characterized by transpressional tectonics that provided conditions for formation of basaltic underplating and subsequent lower crustal melting and generation of I-type magmas. Due to predominant compression in the first half of this event, these magmas could not reach the upper crustal levels. Later on, limited extensional pulses that occurred before the end of this event opened pathways for newly formed mantle melts to reach shallower crustal levels and mix with the evolving I-type magmas. The second event is Middle-Late Miocene in age. It was first associated with clear extensional conditions that caused advancing of basaltic melts to mid-crustal levels. This, in turn, induced the elevation of geotherms, melting of shallow crust and S-type granite formation. This event terminated with transpression that produced small volumes of basaltic melts and finally closed the igneous scene in this part of the Balkan Peninsula. Although we agree that the growth of igneous bodies is usually internally controlled and can be independent from the ambient structural pattern, we have strong reasons to believe that the integration of regional scale observations of fault kinematics with crucial petrogenetic information can be used for establishing spatial-temporal relationships between brittle tectonics and magmatism. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们报告了有关复杂造山系统中构造和岩浆过程之间耦合的证据。该研究集中于科帕奥尼克山。位于第纳里德群岛和喀尔巴索-巴尔卡尼德斯(塞尔维亚南部)之间,是研究构造岩浆演化的理想场所。我们将有关构造古应力张量的新数据集与更广泛的科帕奥尼克山上新生代岩浆岩的现有信息结合起来。区。古应力研究表明存在四个脆性变形相。断层机制与火成过程之间已建立的联系表明,该地区发生了两次大型构造岩浆事件。晚始新世-中新世早期构造-岩浆事件的特征通常是超压构造,为形成玄武质基底和随后的低地壳熔融和I型岩浆的产生提供了条件。由于在该事件的前半期主要受压,这些​​岩浆无法达到地壳上层。后来,在该事件结束之前发生的有限的伸展脉冲为新形成的地幔融化打开了到达地壳浅层并与不断发展的I型岩浆混合的通道。第二个事件是中晚期中新世。它首先与明确的伸展条件有关,导致了玄武质熔体前进到中地壳水平。反过来,这引起了地热的升高,浅层地壳的熔化和S型花岗岩的形成。这次事件以压迫作用终止,产生了少量的玄武质熔体,并最终关闭了巴尔干半岛这一部分的火成岩场景。尽管我们同意火成体的生长通常是内部控制的,并且可以独立于周围的结构模式,但我们有充分的理由相信,将断层运动学的区域尺度观测结果与重要的成岩信息相结合可以用于建立空间-脆性构造与岩浆作用之间的时间关系。 (C)2015 Elsevier B.V.保留所有权利。

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