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Numerical analysis of attenuation effect of EPS geofoam on stress-waves in civil defense engineering

机译:EPS土工泡沫对人防工程中应力波衰减作用的数值分析

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Civil defense shelters are often constructed below ground to provide protection against blast loading. Concrete has been used extensively as a construction material for the defense layer of the shelters. In order to achieve expected attenuation of blast-induced stress-waves, geofoam or cavity inclusions are sometimes embedded in the concrete layer. This paper studies the attenuation of stress-waves in a concrete medium behind a rectangular inclusion of expanded polystyrene (EPS) geofoam with different dimensions. The effects of EPS geofoam inclusions on the reduction of peak axial stress σ_y and hydrostatic pressure P are studied, respectively. One approximation formula is proposed to correlate the decay factor for peak σ_y to the dimensions of the EPS geofoam inclusion based on numerical simulations. This formula is applicable in defense engineering design to estimate the decay factors at different locations or the dimensions of EPS geofoam when other parameters are prescribed. Finally, the effects of multiple rectangular inclusions of EPS geofoam on stress-waves are numerically investigated.
机译:民防庇护所通常建在地下,以防止爆炸。混凝土已被广泛用作避难所防御层的建筑材料。为了实现爆炸引起的应力波的预期衰减,有时会将泡沫塑料或型腔内含物嵌入混凝土层中。本文研究了不同尺寸的膨胀聚苯乙烯(EPS)土工泡沫矩形夹杂物后面混凝土介质中应力波的衰减。分别研究了EPS土工泡沫夹杂物对降低峰值轴向应力σ_y和静水压力P的影响。提出了一种近似公式,基于数值模拟,将峰值σ_y的衰减因子与EPS土工泡沫夹杂物的尺寸相关联。当规定了其他参数时,该公式可用于国防工程设计中以估计EPS泡沫在不同位置或尺寸时的衰减因子。最后,数值研究了EPS土工泡沫中多个矩形夹杂物对应力波的影响。

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