土耳其东北部Refahiye地区侏罗系变质增生杂岩变质岩形成的不同构造背景及其地球动力学意义

IF 1.5 Q1 Earth and Planetary Sciences
G. Göçmengil, İ. Altıntaș, G. Topuz, Özgen Çelik, M. Özkan
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引用次数: 16

摘要

在东庞德斯(土耳其东北部)南缘靠近İzmir-Ankara-Erzincan缝合线的同代上俯冲带蛇绿岩中,出现了两个侏罗纪时代的孤立变质增生杂岩——Refahiye和Kurtlutepe。Refahiye变质岩主要由绿片岩、大理岩、蛇纹岩、千粒岩和小石榴石角闪岩、石榴石云母岩和变硬岩组成。整个单元在石榴石-角闪岩相条件下变质,发掘时退行强烈。Kurtlutepe变质岩主要由亚绿片岩相变质火山岩、变质火山碎屑岩、大理岩、钙千层岩以及少量蛇纹岩和变质岩组成。Refahiye变质岩中的变质岩具有四种不同的地球化学亲缘关系:(i)堆积“风味”,(ii)碱性海洋岛玄武岩(OIB), (iii)富集洋中脊玄武岩(E-MORB)和(iv)拉斑岛弧玄武岩(IAB)。另一方面,库特鲁泰普变质火山岩仅表现出拉斑岩与钙碱性岛弧的地球化学亲缘关系。具有OIB亲和力的变质岩被解释为海洋岛屿的一部分,而具有E-MORB亲和力的变质岩被解释为靠近海洋岛屿和/或地幔被地幔成分交代的羽状远端洋中脊的一部分。具有IAB亲和力的变质基性岩可能是在上覆俯冲上蛇绿岩和弧前蛇绿岩的构造切片、走滑断裂将岩浆弧与俯冲带并置、海底重力滑动和碎屑流或俯冲侵蚀等构造或沉积作用下形成的。但是,变质岩的完全再结晶性质以及场关系不能对所涉及的过程作出任何推断。Kurtlutepe变质火山岩可能代表了与俯冲带碰撞和增生的洋岛弧。洋内岛弧的企图俯冲也可以解释晚侏罗世-早白垩世东庞德地区的岩浆平静。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diverse tectonic settings of formation of the metaigneous rocks in the Jurassic metamorphic accretionary complexes (Refahiye, NE Turkey) and their geodynamic implications
Two isolated metamorphic accretionary complexes of Jurassic age, the Refahiye and Kurtlutepe metamorphic rocks, crop out as tectonic slices within the coeval suprasubduction-zone ophiolite at the southern margin of the Eastern Pontides (NE Turkey), close to the İzmir-Ankara-Erzincan suture. The Refahiye metamorphic rocks are made up of greenschist, marble, serpentinite, phyllite and minor garnet amphibolite, garnet micaschist and metachert. The whole unit was metamorphosed under garnet-amphibolite-facies conditions and strongly retrogressed during exhumation. The Kurtlutepe metamorphic rocks consist of subgreenschist-facies metavolcanics, metavolcaniclastics, marble, calc-phyllite, and minor serpentinite and metachert. Metabasites in the Refahiye metamorphic rocks are represented by four distinct geochemical affinities: (i) cumulate “flavor,” (ii) alkaline oceanic island basalt (OIB), (iii) enriched mid-ocean ridge basalt (E-MORB) and (iv) tholeiitic island arc basalt (IAB). On the other hand, the Kurtlutepe metavolcanic rocks display only tholeiitic to calc-alkaline island arc geochemical affinities. The metabasic rocks with OIB affinities were interpreted as parts of the accreted oceanic islands, and those with E-MORB affinities as parts of accreted ridge segments close to oceanic islands and/or plume-distal mid-ocean ridges with a mantle previously metasomatized by plume components. The metabasic rocks with IAB affinities might have been derived from the overlying suprasubduction ophiolite and/or arc domain by a number of tectonic or sedimentary processes including tectonic slicing of accretionary complex and overlying fore-arc ophiolite, juxtaposition of the magmatic arc with subduction zone by strike slip faults, submarine gravity sliding and debris flows or subduction erosion. However, totally recrystallized nature of the metabasic rocks together with field relations does not allow any inference on the processes involved. The Kurtlutepe metavolcanic rocks might represent collided and accreted oceanic island arc with the subduction zone. Attempted subduction of an intraoceanic island arc may also explain the magmatic lull during Late Jurassic–Early Cretaceous in the Eastern Pontides.
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来源期刊
Geodinamica Acta
Geodinamica Acta 地学-地球科学综合
CiteScore
4.50
自引率
0.00%
发文量
0
审稿时长
25 weeks
期刊介绍: Geodinamica Acta provides an international and interdisciplinary forum for the publication of results of recent research dealing with both internal and external geodynamics. Its aims to promote discussion between the various disciplines that work on the dynamics of the lithosphere and hydrosphere. There are no constraints over themes, provided the main thrust of the paper relates to Earth''s internal and external geodynamics. The Journal encourages the submission of papers in all fields of earth sciences, such as biostratigraphy, geochemistry, geochronology and thermochronology, geohazards and their societal impacts, geomorphology, geophysics, glaciology, igneous and metamorphic petrology, magmatism, marine geology, metamorphism, mineral-deposits and energy resources, mineralogy, orogeny, palaeoclimatology, palaeoecology, paleoceanograpgy, palaeontology, petroleum geology, sedimentology, seismology and earthquakes, stratigraphy, structural geology, surface processes, tectonics (neoteoctonic, plate tectonics, seismo-tectonics, Active tectonics) and volcanism. Geodinamica Acta publishes high quality, peer-reviewed original and timely scientific papers, comprehensive review articles on hot topics of current interest, rapid communications relating to a significant advance in the earth sciences with broad interest, and discussions of papers that have already appeared in recent issues of the journal. Book reviews are also included. Submitted papers must have international appeal and regional implications; they should present work that would be of interest to many different specialists. Geographic coverage is global and work on any part of the world is considered. The Journal also publishes thematic sets of papers on topical aspects of earth sciences or special issues of selected papers from conferences.
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