首页> 外文期刊>Pure and Applied Geophysics >Acoustic, Electromagnetic, and Photon Emission from Dynamically Fracturing Granite
【24h】

Acoustic, Electromagnetic, and Photon Emission from Dynamically Fracturing Granite

机译:动态压裂花岗岩的声,电磁和光子发射

获取原文
获取原文并翻译 | 示例
           

摘要

Laboratory samples of Westerly granite were impacted by a falling striker, and the time series of acoustic and electromagnetic emission (AE and EME) from fracturing rock were recorded with the time resolution of 10 ns. In order to determine precisely the actual instants of beginning and termination of fracturing, the fractoluminescence (FL) signal related to chemical bond ruptures on the sample surface was recorded in parallel to both AE and EME signals. Energy distributions in all three series were characterized by the function N(E E′), where N is the number of emitted signals characterized with the energy release E exceeding a threshold value E′. The fracture dynamics was studied using both the scaling analysis and the non-extensive Tsallis statistics. The energy distributions were approximated with both the empirical Gutenberg–Richter-type relation N(E E′) ∝ E′−b , and the analytical function N q (E E′) that includes the Tsallis’ parameter of non-extensivity, q, and the released energy density. A comparative consideration of information taken from the data of EME, AE and FL emission techniques was carried out in the context of the physical sense of the parameters b and q. The AE time series reflected adequately the cracking process both at microscopic and laboratory scale levels, while the photon emission did not show a direct response on the split-off formation. Time resolution of the EME method was found to be insufficient for studying the dynamic fracture of the given kind.
机译:Westerly花岗岩的实验室样品受到坠落撞击器的撞击,并记录了压裂岩石的声发射和电磁发射(AE和EME)的时间序列,其时间分辨率为10 ns。为了精确确定破裂开始和终止的实际时刻,与AE和EME信号并行记录了与样品表面化学键破裂有关的破裂发光(FL)信号。这三个系列的所有能量分布均由函数N(E> E')表征,其中N是能量释放E超过阈值E'表征的发射信号数量。使用缩放分析和非扩展Tsallis统计数据研究了断裂动力学。能量分布通过经验古腾堡-里希特型关系N(E> E')∝ E'-b 以及包括以下在内的解析函数N q (E> E')来近似Tsallis的非扩展性参数q和释放的能量密度。在参数b和q的物理意义上,对从EME,AE和FL发射技术的数据中获取的信息进行了比较考虑。 AE时间序列在微观和实验室规模水平上都充分反映了裂化过程,而光子发射并未显示出对分裂形成的直接响应。发现EME方法的时间分辨率不足以研究给定类型的动态裂缝。

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