Effect of Structure Height on Seismic Response of Adjacent Structures Considering Soil-Structure Interaction

Mohammed Abdulaziz, M. Hamood, Mohammed Fattah
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Abstract

the dynamic behavior between two adjacent steel structures rested on sand soil. This study employed four novel small-scale multi-degree-of-freedom steel structure models: three, four, and five-story steel structures against a three-story steel structure. The results indicated that the tallest building had the maximum effect on the shorter one, especially on the top displacement with a peak value of 3.82 mm, top acceleration with a peak value of about 0.2 g, and foundation rotation with a peak value of around 1 degree. However, the effect of the structure height has a reverse impact on the soil pressure beneath the foundation of the shortest structure since the largest pressure response was recorded for the effect of the shortest similar adjacent building with a peak value of 8.8 kPa. In comparison, the highest building has the lowest effect on the shortest building, with a peak value of 6 k Pa.
考虑土-结构相互作用的结构高度对相邻结构地震响应的影响
本研究采用了四种新型小型多自由度钢结构模型:三层、四层和五层钢结构与三层钢结构。本研究采用了四种新型小型多自由度钢结构模型:三层、四层和五层钢结构与三层钢结构。结果表明,最高建筑对较矮建筑的影响最大,特别是对顶部位移的影响,峰值为 3.82 毫米;顶部加速度的影响,峰值约为 0.2 克;地基旋转的影响,峰值约为 1 度。然而,结构高度的影响对最矮结构地基下的土壤压力有相反的影响,因为最矮的相邻类似建筑的影响记录到最大的压力响应,峰值为 8.8 kPa。相比之下,最高建筑物对最矮建筑物的影响最小,峰值为 6 k Pa。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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