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Mitigating ground shocks with cellular solids

机译:用多孔固体减轻地面震动

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Underground structures are sometimes threatened by ground shocks induced by subsurface detonations. This paper proposes one possible method to mitigate the subsurface blasts by attaching a cladding consisting of a face sheet and cellular solid core to the exterior of the structure; the cellular core is foam made from relatively strong materials, such as metal or concrete, rather than typical geofoam made from polymer. A simplified model is established to distinguish three scenarios to delineate the dynamic behavior of a foam cladding subjected to a ground shock. The model compares the velocity time histories of the face sheet and the surrounding soil, in which the foam crushing velocity is not high and the foam is densified uniformly. Further, the governing equations for possible high-velocity foam crushing are established, with progressive collapse as foam crushing mode when alleviating subsurface blasts.
机译:地下结构有时会受到地下爆炸引起的地面震动的威胁。本文提出了一种可能的方法,通过将由面板和蜂窝状实芯组成的覆层附着到结构的外部来减轻地下爆炸。蜂窝芯是由相对坚固的材料(例如金属或混凝土)制成的泡沫,而不是由聚合物制成的典型土工泡沫。建立了简化模型以区分三种情况,以描绘遭受地面震动的泡沫覆层的动态行为。该模型比较了面板和周围土壤的速度时间历程,其中泡沫的破碎速度不高,泡沫均匀致密。此外,建立了可能的高速泡沫破碎的控制方程式,当缓解地下爆炸时,泡沫塌陷模式逐渐崩溃。

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