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An experimental study on the rocking response of bridge piers with spread footing foundations

机译:基脚基础扩展的桥墩摇摆反应的试验研究。

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Some spread footing foundations from real retrofitting practices in Taiwan were extended to be uneco-nomically large due to the restriction of foundation uplift regulated in the design code. Although rocking mode of spread footings induced from foundation uplift is not favorable in current design code, recent studies have shown that the rocking of a spread footing may have a beneficial effect on the dynamic performance of piers by reducing the earthquake forces that can be transmitted to the pier base. This implies that the plastic deformation that occurs at the pier's plastic zone can be decreased and as a result the ductility demand of piers can possibly be reduced. In order to gain a better understanding of the structural behavior related to rocking and to clarify that if the widening and strengthening of the foundations to limit the rocking mechanism of spread footing is necessary for the retrofitting work, a series of preliminary rocking experiments were performed. A total of three circular reinforced concrete columns with spread footing foundations were tested. Using pseudo-dynamic tests and a cyclic loading test, these columns were subjected to different levels of earthquake accelerations, including a near field ground motion. The results of the tests and the rocking behavior of the footings are discussed in this paper. From the benchmark test, the difference between the response behavior of a rocking base and a fixed base foundation was highlighted. By comparing the experimental responses of the retrofitted column with the responses of the original one, the effect of the rocking mechanism on the ductility demand and strength demand of the columns was also identified.
机译:由于设计规范中规定的基础抬升的限制,台湾实际的一些改建实践中的一些基础分散的基础被扩展到不经济的范围。尽管在当前的设计规范中,由地基隆起引起的扩展基脚的摇摆模式并不理想,但最近的研究表明,扩展基脚的摇摆可能会通过减少可传递到地下的地震力而对墩的动力性能产生有益的影响。码头基地。这意味着可以减少在墩的塑性区发生的塑性变形,从而可以减少墩的延性要求。为了更好地了解与摇摆有关的结构行为,并阐明如果扩建和加固基础以限制扩展基础的摇摆机理对于改造工作是必需的,则进行了一系列初步摇摆实验。总共测试了三根具有展开基础的圆形钢筋混凝土柱。使用拟动力试验和循环载荷试验,这些柱承受了不同水平的地震加速度,包括近场地面运动。本文讨论了测试结果和基础的摇摆特性。从基准测试中,可以看出摇摆基础和固定基础的响应行为之间的差异。通过将改造后的柱子的实验响应与原始柱子的响应进行比较,还确定了摇摆机制对柱子的延性要求和强度要求的影响。

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