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Energy capacity and seismic performance of RC waffle-flat plate structures under two components of far-field ground motions: Shake table tests

机译:RC华夫饼平板结构的能量容量和地震性能下的遥远场地运动的两个部件:摇动台测试

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The bidirectional response of a portion of a reinforced concrete (RC) waffle-flat plate (WFP) structure subjected to far-field ground motions is studied through shake table tests. The test specimen is a scaled portion of a prototype structure designed under current building codes and located in a region of moderate seismicity of the Mediterranean area. The specimen was subjected to a sequence of tests of increasing acceleration amplitude that respectively represented very frequent, frequent, design, and very rare earthquakes at the site. The test structure performed well (basically in the elastic domain) under very frequent and frequent earthquakes, approached the boundary between the performance levels of life safety and near collapse under the design earthquake, and collapsed under the very rare earthquake. Damage concentrated at column bases and at the transverse beams of the exterior plate-to-column connection. Columns dissipated about 10% of the total energy that contributes to damage, and the rest was dissipated by the exterior plate-column connection. The total energy input on the structure until collapse under the bidirectional seismic action was very close to the value obtained in previous studies on a similar specimen tested under unidirectional ground motions. The capacity curve estimated from the experimental base shear vs top displacement relationship suggests it is best to use a behavior factor of at most q = 2 when designing WFP structures with the reduced-spectrum force-based approach.
机译:通过摇动台试验研究对远场地面运动进行的钢筋混凝土(RC)华夫饼平板(WFP)结构的一部分的双向响应。试样是在当前建筑码下设计的原型结构的缩放部分,并且位于地中海区域的中等地震性区域中。对样本进行一系列的试验,增加了加速度幅度,分别代表了该部位的非常频繁,频繁,设计和非常罕见的地震。测试结构在非常频繁和频繁的地震下进行良好(基本上在弹性域中),在设计地震下近乎塌陷之间的性能水平与近乎塌陷之间的边界,并在非常罕见的地震下倒塌。在柱碱基和外板到柱连接的横梁上集中的损坏。柱散发了有助于损坏的总能量的10%,其余部分由外部板柱连接消散。在双向地震作用下塌陷的结构上的总能量输入非常接近先前在单向地面运动下测试的类似标本中获得的值。从实验基础剪切VS顶部位移关系估计的容量曲线表明,在使用基于频谱力的方法的WFP结构设计WFP结构时,最好使用最多Q = 2的行为因子。

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