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Studies on seismic performances of the prestressed egg-shaped digester with shaking table test

机译:振动台试验研究预应力蛋形消化池的抗震性能

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摘要

The seismic response and performance of a water-filled, prestressed concrete egg-shaped digester (ESD) subjected to various earthquake inputs are investigated by shaking table test. A 1:8 scaled model structure was tested. The tests involve three stages including the empty model digester (EMD1) subjected to accelerations of relatively small peak ground acceleration (PGA), the model digester filled with half volume of water (WMD) subjected to accelerations of medium PGA and the empty model digester with water taken out (EMD2) subjected to acceleration with PGA up to a large value. According to the site condition and seismic background, two scaled ground motion accelerations, the recorded El Centro acceleration (ELA) and the artificial acceleration adopted in Guangzhou (GZA), are employed as the seismic excitations. The natural frequency, seismic responses including the amplification factor of acceleration (AFA), the relative displacement and the strain and stress of the EMD1, WMD and EMD2, are investigated based on the test results. Some features are captured and discussed. The fluid-solid coupling effects on different responses are pointed out. Finite-element modeling computations are conducted. Comparison with the test counterparts shows a fair agreement on the whole, indicating the reasonability as an engineering model. However, detailed stochastic response analysis and reliability assessment are necessary to comprehensively capture seismic performances of the ESD. Some concluding remarks are made.
机译:通过振动台试验研究了充水预应力混凝土蛋形蒸煮器(ESD)在各种地震输入下的地震响应和性能。测试了1:8缩放的模型结构。测试涉及三个阶段,包括空模型消化器(EMD1)承受相对较小的峰值地面加速度(PGA)的加速度,填充有一半体积水(WMD)的模型消化器受到中等PGA加速度的加速度以及空模型消化器具有的加速度取出的水(EMD2)通过PGA加速到一个很大的值。根据现场条件和地震背景,地震激励采用了两个缩放的地面运动加速度,即记录的El Centro加速度(ELA)和广州采用的人工加速度(GZA)。根据测试结果,研究了固有频率,地震响应,包括加速度放大因子(AFA),相对位移以及EMD1,WMD和EMD2的应变和应力。捕获并讨论了一些功能。指出了流固耦合对不同响应的影响。进行了有限元建模计算。与测试对象的比较显示出总体上的公平共识,表明了作为工程模型的合理性。但是,需要详细的随机响应分析和可靠性评估才能全面捕获ESD的地震性能。发表一些结论性意见。

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