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B20 Robust Acoustic Waveform Inversion from Underground Galleries to Image Strike-slip Faults in Clay-rock Formations

机译:B20强大的声波从地下画廊反演到粘土岩层中的图像防滑断层

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Deep argillaceous formations are potential host media for high-level long-life radioactive waste due to their confining properties. In order to improve its ability to expertise possible projects of radioactive waste disposal in a geological clay-rock formation, the French Institute for Radioprotection and Nuclear Safety led various experiments in the undeground Toumemire Experimental Platform (TEP). The presence of strike-slip faults with small vertical offsets in clay-rock formations, as they are observed in the TEP, must be well assessed since they could modify the confining properties of the host rock. The TEP is composed of several galleries excavated in a 200 m thick Toacian clay-rock layer. Various studies have shown this type of fault is difficult to detected with seismic reflection from the surface or from galleries. Thus we tried to image a 10 m thick strike-slip fault with a transmission survey involving several galleries. We present here how the use of a robust adaptation of weighted acoustic full waveform inversion can provide a high resolution P-wave velocity model and revealed a much more complex structure than expected.
机译:由于其限制属性,深骨质地层是高水平的长寿放射性废物的潜在宿主媒体。为了改善地质粘土岩层在地质粘土岩层中的专业知识项目的专业化项目,法国放射碾压和核安全研究所在Overegroundge Toumemire实验平台(Tep)中LED各种实验。在TEP中观察到粘土岩层中具有小垂直偏移的滑动故障的存在,必须得到很好的评估,因为它们可以修改主体岩石的限制性。 Tep由几个在200米厚的ToAcian岩石层中挖掘的几个画廊组成。各种研究表明这种类型的故障难以从表面或画廊的地震反射检测。因此,我们试图通过涉及几个画廊的传输调查来实现10米厚的滑动故障。我们在这里介绍了如何使用加权声学全波形反转的鲁棒自适应,可以提供高分辨率的P波速度模型,并揭示了比预期更复杂的结构。

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