首页> 外文期刊>Physics of the Earth and Planetary Interiors: A Journal Devoted to Obsevational and Experimerntal Studies of the Chemistry and Physics of Planetary Interiors and Their Theoretical Interpretation >Simultaneous acoustic emissions monitoring and synchrotron X-ray diffraction at high pressure and temperature: Calibration and application to serpentinite dehydration
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Simultaneous acoustic emissions monitoring and synchrotron X-ray diffraction at high pressure and temperature: Calibration and application to serpentinite dehydration

机译:在高压和高温下同时进行声发射监测和同步加速器X射线衍射:蛇纹石脱水的校准和应用

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We have successfully developed an experimental setup that allows collecting in situ X-ray powder diffraction and simultaneously recording full waveform acoustic emissions (AE) at high pressure and temperature (PT) in a DIA multi-anvil device. This setup is a powerful tool for investigating rock embrittlement at high PT due to phase transitions and/or mineral reactions since both reaction progress (and kinetics) and AE triggering can be simultaneously monitored. The dehydration of natural serpentinite samples (antigorite-rich) under deviatoric stress has been investigated by this method since antigorite dehydration is believed to trigger intermediate depth earthquakes through dehydration embrittlement. We performed, beforehand, a series of tests on the cold compression of reference materials with contrasted mechanical behaviors (quartz beads and kaolinite powder). Due to grain crushing, cold compression of quartz gave rise to numerous AE events (several hundreds), which were located within the sample. Cold compression and heating of kaolinite, a ductile material, yielded no AEs, demonstrating that the pressure assembly is noiseless. Unexpectedly, antigorite-rich serpentinite samples produced no detectable AEs in the course of their dehydration under the differential stress imposed by alumina waveguides. The only AEs that were recorded occurred during cold compression. Sample microstructures indicate that conjugate faults inherited from the cold compression stage are activated during or after dehydration of the sample. The " aseismic" slip along these faults could be attributed to the presence of talc (or a talc-like phase) or of fine-grained materials (dehydration reaction products) in the fault gouge. Furthermore, AE triggering can also be influenced by hydraulic diffusivity and the differential stress level on the sample, two parameters that are not controlled in conventional multi-anvil experiments. Our results highlight the fact that coupling between dehydration reactions and seismicity might not be as straightforward as previously thought. In fact, fast reaction kinetics or high reaction extent may inhibit the nucleation of mechanical instabilities through rapid stress relaxation of the solid matrix.
机译:我们已经成功开发了一种实验装置,该装置可以在DIA多砧装置中收集原位X射线粉末衍射并同时记录高压和高温(PT)下的全波形声发射(AE)。该设置是研究由于相变和/或矿物反应导致的高PT岩石脆化的有力工具,因为可以同时监控反应进程(和动力学)和AE触发。通过这种方法研究了天然蛇纹岩样品(富含抗蛇纹石)在脱水应力下的脱水,因为据信抗蛇纹石的脱水会通过脱水脆化引发中等深度地震。我们事先对参考材料的冷压缩进行了一系列测试,这些材料具有相反的机械性能(石英珠和高岭石粉)。由于晶粒破碎,石英的冷压引起了许多AE事件(几百次),这些事件位于样品中。高岭土(一种易延展材料)的冷压缩和加热未产生任何声发射,表明压力组件无噪音。出乎意料的是,富含氧化铝的蛇纹石样品在氧化铝波导施加的不同应力下的脱水过程中没有产生可检测到的AE。记录的唯一AE发生在冷压缩期间。样品的微观结构表明,从冷压阶段继承的共轭断层在样品脱水过程中或脱水后被激活。沿着这些断层的“抗震”滑动可能归因于断层泥中滑石(或类似滑石相)或细粒物质(脱水反应产物)的存在。此外,AE触发也可能受到水力扩散率和样品上的应力差水平的影响,这是常规多砧实验无法控制的两个参数。我们的结果突出了这样一个事实,即脱水反应和地震活动之间的耦合可能不像以前想象的那么简单。实际上,快速的反应动力学或高的反应程度可通过固体基质的快速应力松弛来抑制机械不稳定性的形核。

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