钢筋混凝土墙体对电磁脉冲屏蔽效果的建模

Se-Young Hyun, Kyung-Won Lee, J. Yook
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引用次数: 5

摘要

本文对钢筋混凝土结构在1 GHz以下电磁脉冲照射下的屏蔽效果进行了建模和分析。钢筋混凝土通过混凝土以及嵌入的钢筋导电网格在特定频率下提供屏蔽效果。采用商用三维电磁场求解器对钢筋混凝土结构进行了分析。通过计算混凝土、钢筋和整个钢筋混凝土的屏蔽效果来获得屏蔽效果。结果表明,减小螺纹钢间距和增大螺纹钢直径会降低透光系数。钢筋厚度分别为10、20和30 mm的单层在500 MHz下的透射系数分别为-1.89、-2.73和-4.76 dB/10cm。此外,在相同条件下,双层钢筋结构的衰减值分别为-2.46、-6.16和-9.55 dB/10cm。
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Modeling of shielding effectiveness of reinforced concrete walls for electromagnetic pulse
In this paper, the shielding effectiveness of reinforced concrete structures under electromagnetic pulse (EMP) illumination has been modeled and analyzed below 1 GHz regime. The reinforced concrete provides shielding effectiveness at particular frequencies by the concrete as well as the embedded reinforced conductive grid. The reinforced concrete structures are analyzed using commercial 3-dimensional electromagnetic field solver. The shielding effectiveness has been accessed by computing the effect of concrete, rebar and entire reinforced concrete. These results suggest that decreasing spacing of the rebar and increasing the rebar diameter will decrease transmission coefficient. The single layer having the thickness of rebar of 10, 20 and 30 mm reveal transmission coefficient of -1.89, -2.73 and -4.76 dB/10cm, respectively, at 500 MHz. In addition, double layers rebar structure provides -2.46, -6.16 and -9.55 dB/10cm attenuation, respectively, for the same conditions.
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