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首页> 外文期刊>Journal of structural geology >Frictional properties of megathrust fault gouges at low sliding velocities: New data on effects of normal stress and temperature
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Frictional properties of megathrust fault gouges at low sliding velocities: New data on effects of normal stress and temperature

机译:低滑动速度大推力断层泥的摩擦特性:正应力和温度影响的新数据

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摘要

Friction data used in modelling studies of subduction zone seismogenesis are often poorly representative of in situ conditions. We investigated the influence of in situ effective stresses and temperatures on the frictional properties of (simulated) fault gouges, prepared either from Nankai ODP material or illite shale, at sliding velocities approaching those relevant for earthquake nucleation and SSEs. Biaxial (double direct shear) experiments were performed at room temperature, normal stresses of 5-30 MPa, and sliding velocities of 0.16—18 nm/s. All materials exhibited velocity strengthening under these conditions, along with an increase in the friction coefficient and slip hardening rate with increasing normal stress. Illite gouge showed increased velocity strengthening towards higher normal stresses. The effect of temperature was investigated by means of ring shear experiments on illite gouge at 200—300 ℃, an effective normal stress of 170 MPa, a pore-fluid pressure of 100 MPa and sliding velocities of 1—100 um/s. These experiments showed a transition from velocity strengthening to velocity weakening at ~250℃. Our results provide a possible explanation for the updip seismogenic limit within subduction zone mega-thrusts and imply an enhanced tendency for earthquake nucleation and SSEs at low effective normal stresses.
机译:在俯冲带地震发生建模研究中使用的摩擦数据通常不能很好地代表原位条件。我们调查了由南开ODP材料或伊利石页岩制备的(模拟)断层泥在滑动速度接近与地震成核和SSE有关的滑动速度时的原位有效应力和温度对其摩擦性能的影响。双轴(双直接剪切)实验在室温,正应力5-30 MPa和滑动速度0.16-18 nm / s下进行。在这些条件下,所有材料都表现出速度增强,并且随着正应力的增加,摩擦系数和滑动硬化率也随之增加。伊利石凿子显示出更高的速度增强,朝向更高的法向应力。通过环形剪切实验研究了温度对200-300℃伊利石凿,有效法向应力170 MPa,孔隙流体压力100 MPa和滑动速度1-100 um / s的影响。这些实验表明,在〜250℃时从速度增强到速度减弱的过渡。我们的结果为俯冲带大推力范围内的上倾地震成因极限提供了可能的解释,并暗示了在低有效正应力下地震成核和SSE趋势增强。

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  • 来源
    《Journal of structural geology》 |2012年第5期|p.156-171|共16页
  • 作者单位

    HPT Laboratory, Department of Earth Sciences, Faculty of Geosciences, Utrecht University, P.O. Box 80.021, 3508 TA Utrecht, The Netherlands;

    HPT Laboratory, Department of Earth Sciences, Faculty of Geosciences, Utrecht University, P.O. Box 80.021, 3508 TA Utrecht, The Netherlands;

    Biomolecular Imaging, Department of Biology, Faculty of Science, Utrecht University, P.O. Box 80.056, 3508 TB Utrecht, The Netherlands;

    HPT Laboratory, Department of Earth Sciences, Faculty of Geosciences, Utrecht University, P.O. Box 80.021, 3508 TA Utrecht, The Netherlands;

    Department of Earth and Planetary Systems Science, Graduate School of Science, Hiroshima University, Higashi-Hiroshima 739-8526, Japan,Present address: State Key Laboratory of Earthquake Dynamics, Institute of Geology, China Earthquake Administration, P.O. Box 9803, Beijing 100029, China;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    subduction zone seismicity; updip seismogenic limit; velocity weakening; smectite; illite; ocean drilling program leg 190;

    机译:俯冲带地震活动性;上震极限;速度减弱蒙脱石伊利石海洋钻探计划第190条;

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