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Damping Ratio of RC Squat Wall with Limited Damage under High-Frequency Earthquake

机译:高频地震损伤有限的RC蹲墙墙的阻尼比

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摘要

In regions experiencing high-frequency earthquakes, it is necessary to reevaluate the seismic performance of nuclear power plant buildings. In the evaluation of equipment, as well as the structure, the damping ratio of a structure is important. In the present study, to evaluate the damping ratio of walls with limited damage, a shaking table test was conducted for reinforced concrete squat walls with a low aspect ratio. The test variables were the natural frequency of the walls and the type of earthquake (i.e., earthquakes with and without high -frequency contents). The result showed that for a peak ground acceleration of 0.1g, the damping ratio of the walls was 3.5% for the mean and 0.27 for the standard deviation, while for high-frequency earthquakes, the damping ratio was 14.3% lower (3.0% for the mean). In particular, as the dynamic response amplification increased, the damping ratio decreased; when the dynamic amplification was greater than 1.5, the average damping ratio of the walls was 2.4%. (c) 2020 American Society of Civil Engineers.
机译:在经历高频地震的地区,有必要重新评估核电站建筑的地震性能。在设备的评估中,以及结构的情况下,结构的阻尼比是重要的。在本研究中,为了评估损坏有限的壁的阻尼比,对具有低纵横比的钢筋混凝土蹲墙进行振动台测试。测试变量是墙壁的固有频率和地震的类型(即,地震,没有高少数内容)。结果表明,对于0.1g的峰接地加速度,对于标准偏差的平均值和0.27,壁的阻尼比为3.5%,而对于高频地震,阻尼比率为14.3%(3.0%均值)。特别是,随着动态响应放大的增加,阻尼比降低;当动态放大大于1.5时,壁的平均阻尼比为2.4%。 (c)2020年美国土木工程师协会。

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