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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Relationships Between Eclogite-Facies Mineral Assemblages, Deformation Microstructures, and Seismic Properties in the Yuka Terrane, North Qaidam Ultrahigh-Pressure Metamorphic Belt, NW China
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Relationships Between Eclogite-Facies Mineral Assemblages, Deformation Microstructures, and Seismic Properties in the Yuka Terrane, North Qaidam Ultrahigh-Pressure Metamorphic Belt, NW China

机译:北柴达姆矿物矿物组合,变形微观结构与地震性能的关系,北柴达姆超高压变质腰带,NW中国

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摘要

To understand the relationships between eclogite-facies mineral assemblages, deformation microstructures, and the seismic properties of subducting oceanic crust, eclogites from the Yuka terrane, North Qaidam ultrahigh-pressure metamorphic belt, NW China, were studied. Observations of mineral textures, deformation microstructures, and petrofabrics in the eclogites indicate that garnet, omphacite, and phengite were deformed by intracrystalline deformation (i.e., dislocation creep) during prograde metamorphism. In contrast, amphibole, which was formed by the topotactic replacement of omphacite at fluid-present conditions, is considered to have been deformed by diffusional flow (dissolution-precipitation creep) during amphibolite-facies retrogression associated with exhumation. Based on the petrofabrics in the samples, the seismic properties of the eclogites were calculated depending on eclogite-facies mineral assemblages such as garnet + omphacite, garnet + omphacite + phengite, garnet + omphacite + phengite + lawsonite, garnet + omphacite + phengite + amphibole, and garnet + omphacite + amphibole. We found that the seismic signatures of each of the eclogite-facies mineral assemblages were different. In particular, phengite-bearing eclogites (the garnet + omphacite + phengite/garnet + omphacite + phengite + amphibole assemblages), depending on phengite content, produced the strongest seismic anisotropy (AVp and AVs), with a strong polarization anisotropy, that was at least three times higher than bimineralic (phengite-absent) eclogites (garnet + omphacite assemblage). Our results indicate that phengite, as a stable phase at high-pressure and high-temperature conditions, can play an important role in the creation of trench-parallel seismic anisotropy in the eclogite-facies mineral assemblages found in subduction zones.
机译:要了解欧洲矿物矿物组合,变形微观结构与底层海壳的地震性能,研究了Yuka Terrane,北柴达姆超高压变质带,NW中国的Eclogites。 eClogites中矿物质纹理,变形微观结构和Petrofabrics的观察表明石榴石,Omphacite和Phengite通过在翼形变质期间通过脑啡肽变形(即位错蠕变)而变形。相反,通过在流体 - 现有条件下通过拓扑替代斑的突出替代稗型形成的倒像吡啶物体通过在与送达相关的倒置流动(溶解 - 沉淀蠕变)中被漫射流动(溶解 - 沉淀蠕变)变形。基于样品中的Petrofabrics,根据Garnet + Omphacite,Garnet + Omphacite + Phengite,Garnet + Omphacite + Lawonite,Garnet + Omphacite + Phengite + Bawenge +闪锌矿和石榴石+ Omphacite + amphibole。我们发现每个Eclogite相片矿物组合的地震签名都不同。特别是,轴承的eClogites(Garnet + Omphacite + Phengite / Gengite / Gengite + Phengite + Amphibole组装),取决于Phengite含量,产生了最强的地震各向异性(AVP和AVS),具有强烈的极化各向异性,即在比氨氨inalic(Phengite-Anhent)eClogites(Garnet + Omphacite组装)高至少三倍。我们的结果表明,作为高压和高温条件下的稳定阶段,峰值在俯冲区发现的欧洲矿物矿物组合中的沟槽平行地震各向异性中产生了重要作用。

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