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Centrifuge Modeling to Evaluate Kinematic Soil-Foundation-Structure Interaction

机译:离心机建模以评估运动学土基 - 基础结构互动

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Because of soil-foundation-structure interaction (SFSI), the measured foundation motion (FM) diverges from the free-field motion (FFM). In the substructure SFSI analysis, a motion for a massless rigid foundation is defined as the foundation input motion (FIM), which cannot be physically measured. This paper describes a set of seismic centrifuge experiments to compare the FM motions in single foundations with responses closer to FIM. Three tests were performed on a soil-foundation-structure model (SFSM), a steel foundation model (SFM), and an acrylic foundation model (AFM). Results show that FM in SFSM is different from the ones in single foundation models and in a frequency range around the flexible base natural frequency of the structure. While the lateral component of FM in SFSM is smaller than those of SFM and AFM, the rocking component is greater. Therefore, using the measured FM instead of FIM specially in the translational direction would be non-conservative.
机译:由于土对基础结构相互作用(SFSI),测量的基础运动(FM)从自由场动作(FFM)发散。在子结构SFSI分析中,对无麻刚性基坑的运动被定义为基础输入运动(FIM),其不能物理测量。本文介绍了一组地震离心机实验,以比较单个基础中的FM运动,与更接近FIM的反应。在土基础结构模型(SFSM),钢基础模型(SFM)和丙烯酸基础模型(AFM)上进行三次试验。结果表明,SFSM中的FM与单个基础模型中的FM不同,围绕结构的柔性基础自然频率范围内的频率范围不同。虽然SFSM中FM的横向分量小于SFM和AFM的FM,而摇摆部件较大。因此,使用测量的FM而不是特殊地在平移方向上的FIM将是不保守的。

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