...
首页> 外文期刊>Geology >Asperity interactions during creep of simulated faults at hydrothermal conditions
【24h】

Asperity interactions during creep of simulated faults at hydrothermal conditions

机译:热液条件下模拟断层蠕变过程中的粗糙相互作用

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Grain-scale deformation processes during sliding on simulated faults, and in the presence of reactive pore fluids, are examined with in situ, see-through experiments using polycrystalline biphenyl aggregates at 60 ℃ as a rock analogue. Reactive pore fluids were water-alcohol-vapor mixtures and bulk shear strain rates were 5.8 * 10~(-6)s~(-1). Under these conditions, slip at displacement rates around 0.01 μm/s on shear fractures involves a mixture of cataclasis and frictional sliding, together with dissolution and precipitation processes. Simultaneously, dislocation flow processes accommodate distributed shearing away from slip surfaces. The evolution of fault porosity is controlled by a dynamic competition between crack growth and opening and crystal growth into cracks and pore spaces. During progressive sliding, growing crystals and other asperities on opposing fracture walls interact by fracturing, rotation, grain translation, and dissolution and precipitation. This multimechanism behavior in rock analogue materials provides insights about the mechanical behavior of faults in the presence of hydrothermal fluids at seismogenic depths. Models of the strength and slip behavior of natural faults may thus need to consider multimechanism behavior during frictional sliding.
机译:使用在60℃下的多晶联苯聚集体作为岩石类似物,通过原位透视实验检查了在模拟断层上滑动和存在反应性孔隙流体时的晶粒尺寸变形过程。反应性孔隙流体为水-醇-蒸汽混合物,体积剪切应变率为5.8 * 10〜(-6)s〜(-1)。在这些条件下,剪切裂缝上位移速率约为0.01μm/ s的滑移涉及催化作用和摩擦滑动的混合,以及溶解和沉淀过程。同时,位错流动过程适应了远离滑动面的分布剪切。断层孔隙度的演化受裂纹扩展与开裂以及晶体生长成裂纹和孔隙的动态竞争控制。在渐进式滑动过程中,相对的破裂壁上生长的晶体和其他粗糙物通过破裂,旋转,晶粒平移以及溶解和沉淀相互作用。岩石类似材料中的这种多机理行为提供了有关在地震发生深度处存在热液的断层力学行为的见解。因此,自然断层的强度和滑动行为模型可能需要考虑摩擦滑动过程中的多机理行为。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号