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首页> 外文期刊>Geology >Miocene to present kinematics of fault-bend folding across the Huerguosi anticline, northern Tianshan (China), derived from structural, seismic, and magnetostratigraphic data
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Miocene to present kinematics of fault-bend folding across the Huerguosi anticline, northern Tianshan (China), derived from structural, seismic, and magnetostratigraphic data

机译:中新世将从构造,地震和地层学数据中得出北天山(Huerguosi)背斜的断层弯曲运动学

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摘要

We combine surface structural measurements, subsurface seismic imaging, and magneto-stratigraphic dating to retrieve, through geometric modeling, the detailed history of fold growth and sedimentation across the Huerguosi anticline, on the northern Tianshan piedmont, taking advantage of a beautifully exposed section of growth strata. The model assumes a fault-bend folding mechanism, consistent with subsurface fold geometry. The shortening history is obtained by least-squares fitting of the measured dip angles of the growth strata. The shortening rate across the anticline is shown to have been remarkably constant: it increased only slightly from 0.84 ± 0.04 mm/yr between 10 and 4 Ma to 1.14 ± 0.02 mm/yr over the past 4 m.y. This approach also allows correcting syntectonic sedimentation rates for the effect of the fold growth and shows that the sedimentation rates in the piggyback basin increased abruptly from ~0.4 to ~0.7 mm/yr ca. 4 Ma.
机译:我们将表面结构测量,地下地震 成像和磁地层测年结合起来,以通过 几何建模检索褶皱生长和 的详细历史记录。在天山山前北部 北部Huerguosi背斜上进行沉积,利用了生长层中暴露得很漂亮的 部分。该模型假定断层弯曲折叠机制 与地下褶皱几何结构一致。缩短的 历史是通过对生长层的测量的 倾角进行最小二乘拟合得到的。横跨 背斜的缩短率显示出非常恒定的: 在10和4之间仅从0.84±0.04 mm / yr略有增加在过去的4 my 中将Ma设置为1.14±0.02 mm / yr,此方法还可以针对褶皱生长的影响来校正构造沉降速率,表明沉降背basin盆地的速率从〜0.4突然增加到 〜0.7 mm / yrca。 4个月

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  • 来源
    《Geology》 |2008年第11期|871-874|共4页
  • 作者单位

    Tectonics Observatory, California Institute of Technology, Mail Code 100-23, Pasadena, California 91125, USA;

    Tectonics Observatory, California Institute of Technology, Mail Code 100-23, Pasadena, California 91125, USA;

    Institut des Sciences de la Terre d'Orléans, Batiment Géosciences, rue de Saint Amand, BP 6759, 45067 Orléans Cedex 2, France;

    Géosciences Montpellier UMR 5243 CNRS-UMII, cc.60, Université Montpellier 2, 34095 Montpellier Cedex, France;

    Ludwig Maximilians University, Department of Earth and Environmental Sciences, Theresienstrasse 41, 80333 Munich, Germany;

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