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Flat lens effect on seismic waves propagation in the subsoil

机译:平面透镜对地基中地震波传播的影响

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We show that seismic energy simulated by an artificial source that mainly propagates Rayleigh surface waves, is focused in structured soil made of a grid of holes distributed in the ground. We carry out large-scale field tests with a structured soil made of a grid consisting of cylindrical and vertical holes in the ground and a low frequency artificial source (10?Hz). This allows the identification of a distribution of energy inside the grid, which can be interpreted as the consequence of a dynamic anisotropy akin to an effective negative refraction index. Such a flat lens reminiscent of what Veselago and Pendry envisioned for light opens avenues in seismic metamaterials to counteract partially or totally the most devastating components of seismic signals.
机译:我们表明,由主要传播瑞利表面波的人工震源模拟的地震能量集中在结构化的土壤中,该结构化的土壤由分布在地面上的孔眼网格组成。我们对结构化土壤进行了大规模的现场测试,该结构化土壤由网格组成,网格由地面上的圆柱孔和垂直孔以及低频人工源(<10?Hz)组成。这允许识别网格内部的能量分布,这可以解释为类似于有效负折射率的动态各向异性的结果。这种平面透镜让人想起Veselago和Pendry对光的设想,这为地震超材料提供了途径,以抵消部分或全部抵消地震信号中最破坏性的成分。

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