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Interaction of adjacent multi-storey RC frames at significant damage and near collapse limit states

机译:相邻多层RC框架在严重破坏和接近破坏极限状态下的相互作用

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The interaction problem between adjacent multi-storey reinforced concrete structures with unequal storey levels and different total heights at different limit states for three intensity levels of seismic hazard is evaluated. The seismic performance of the external column of the tall building that suffers the impact from the upper floor slab of the adjacent shorter structure is under consideration. The critical column's local requirements are checked at three different seismic demands according to the Eurocode 8 - part 3: (a) demand for damage limitation limit state (b) demand for significant damage limit state and (c) demand for near collapse limit state. More than 252 nonlinear dynamic step by step analyses have been performed. The results indicate that the column that suffers the impact appears to be in a critical condition due to high ductility demands when the limit state for the assessment is increased from damage limitation to significant damage and to near collapse state. As expected, the column that suffers the hit is always in a critical condition due to shear action. The limit state that is adopted for the evaluation of the pounding effect on the maximum shear requirements of the column slightly altered the results. However, the level of the seismic intensity influences the number of times the shear demands of the column exceed the available strength during the analysis. An increase of the developing requirements for inter-storey drift is also observed in all the cases where the seismic intensity is increased and the limit state becomes more exigent. The minimum gap distance between the adjacent structures that is required in order to eliminate the shear demands of the column seems to be depended on the limit state and the level of the seismic hazard that is used for the evaluation.
机译:针对三个地震烈度水平,研究了不同层高和不同总高度在不同极限状态下相邻多层钢筋混凝土结构之间的相互作用问题。高层建筑外柱的抗震性能受到了相邻较短结构上层楼板的影响。根据欧洲规范8-第3部分,在三种不同的地震需求下检查临界柱的局部要求:(a)破坏极限极限状态的要求(b)极限破坏极限状态的要求和(c)接近崩溃极限状态的要求。进行了超过252个非线性动态逐步分析。结果表明,当评估的极限状态从破坏极限增加到明显破坏和接近崩溃状态时,由于高延展性要求,遭受冲击的柱子似乎处于临界状态。正如预期的那样,遭受撞击的色谱柱由于剪切作用始终处于临界状态。评估立柱对最大剪切需求的冲击效果所采用的极限状态会稍微改变结果。但是,地震强度的水平会影响分析过程中柱的抗剪要求超过可用强度的次数。在地震强度增加且极限状态变得更加紧急的所有情况下,也观察到层间漂移的发展要求增加。消除柱的剪切要求所需的相邻结构之间的最小间隙距离似乎取决于极限状态和用于评估的地震危险等级。

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