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首页> 外文期刊>Earthquake Science >High-velocity frictional behavior of Longmenshan fault gouge from Hongkou outcrop and its implications for dynamic weakening of fault during the 2008 Wenchuan earthquake
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High-velocity frictional behavior of Longmenshan fault gouge from Hongkou outcrop and its implications for dynamic weakening of fault during the 2008 Wenchuan earthquake

机译:2008年汶川地震中虹口露头龙门山断层泥的高速摩擦行为及其对断层动力减弱的影响

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Abstract High-velocity friction experiments were conducted on clayey fault gouge collected from Hongkou outcrop of Beichuan fault, located at the southwestern part of Longmenshan fault system that caused the disastrous 2008 Wenchuan earthquake. The ultimate purpose of this study is to reproduce this earthquake by modeling based on measured frictional properties. Dry gouge of about 1 mm in thickness was deformed dry at slip rates of 0.01 to 1.3 m/s and at normal stresses of 0.61 to 3.04 MPa, using a rotary-shear high-velocity frictional testing machine. The gouge displays slip weakening behavior as initial peak friction decays towards steady-state values after a given displacement. Both peak friction and steady-state friction remain high at slow slip rates are examined and gouge only exhibits dramatic weakening at high slip rates, with steady-state friction coefficient values of about 0.1 to 0.2. Specific fracture energy ranges from 1 to 4 MN/m in our results and this is of the same order as seismically determined values. Low friction coefficients measured on experimental faults are in broad agreement with lack of thermal anomaly observed from temperature measurements in WFSD-1 drill hole (Wenchuan Earthquake Fault Scientific Drilling Project), which can be explained by even smaller friction coefficient for the Wenchuan earthquake fault. High-velocity friction experiments with pore water needs to be done to see if even smaller friction is attained or not. Shiny slickenside surfaces form at high slip rates, but not at slow slip rates. Slip zone with slickenside surface changes its color to dark brown and forms duplex-like microstructures, which are similar to those microstructures found in the fault gouges from the Hongkou outcrop. Detailed comparisons between experimentally deformed gouge samples and WFSD drill cores in the future will reveal how much we could reproduce the dynamic weakening processes in operation in fault zones during Wenchuan earthquake at present.
机译:摘要对位于龙门山断裂系统西南部的北川断层虹口露头采集的黏性断层泥进行了高速摩擦实验,该地震造成了2008年汶川特大地震。这项研究的最终目的是通过基于测得的摩擦特性进行建模来重现这次地震。使用旋转剪切高速摩擦试验机,以0.01到1.3 m / s的滑移率和0.61到3.04 MPa的法向应力使厚度约1 mm的干凿干燥变形。当给定位移后,初始峰值摩擦力朝着稳态值衰减时,凿孔机显示出滑移减弱行为。在慢滑率下,峰值摩擦力和稳态摩擦都保持较高,并且在高滑率下,凿痕仅表现出明显的减弱,稳态摩擦系数值约为0.1到0.2。在我们的结果中,比断裂能的范围为1-4 MN / m,这与地震确定的值处于同一数量级。在实验断层上测得的低摩擦系数与在WFSD-1钻孔(汶川地震断层科学钻探项目)中的温度测量中观察到的热异常缺乏基本吻合,这可以用汶川地震断层的较小摩擦系数来解释。需要用孔隙水进行高速摩擦实验,以查看是否获得了更小的摩擦。光滑的光滑表面以高的滑移率形成,但不是以慢的滑移率形成。具有光滑面的滑移带将其颜色变为深褐色,并形成双工状的微观结构,类似于虹口露头断层泥中发现的那些微观结构。将来,通过对实验变形的气凿样品和WFSD钻芯进行详细的比较,可以发现,在汶川地震期间,我们可以重现断层带运行中的动力减弱过程。

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