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Structural inertial interaction effects on foundation behavior

机译:结构惯性相互作用对基础行为的影响

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The effect of inertial interaction of a superstructure with the soil must be understood to evaluate soil-foundation-structure interaction (SFSI) problems. Inertial interaction causes period lengthening and damping increasing and affects the foundation behavior, rocking and swaying motions. This effect is also significant in systems that induce foundation-yielding behaviors during earthquakes, such as rocking foundation. This study evaluates the structural inertial interaction effects on the foundation behavior through an analytical calculation to obtain the natural frequencies of the foundation's rocking and swaying motions. Dynamic centrifuge tests were also conducted to evaluate the variations in natural frequencies of an SFSI system on the rocking foundation. Test results demonstrate that the natural frequency of foundation motion is close to that of structural motion as far as foundation yielding behaviors are concerned. From strong seismic data, with free-field motion as the input motion, a reasonable natural period of the structure is identified. However, the structural natural period is considered abnormal when the foundation motion is used as the input motion. This phenomenon should be considered in future SFSI studies.
机译:必须理解,使用过上部结构与土壤的惯性相互作用的影响来评估土基结构相互作用(SFSI)问题。惯性相互作用导致周期延长和阻尼增加,影响基础行为,摇摆和摇摆运动。这种效果在地震期间诱导基础屈服行为的系统中也是显着的。本研究通过分析计算评估了对基础行为的结构惯性相互作用效应,以获得基础摇摆和摇曳运动的自然频率。还进行了动态离心机测试,以评估SFSI系统对摇摆基础的自然频率的变化。目前,测试结果表明,立即接近结构运动的自然频率,就基于屈服行为而言。从强大的地震数据,用自由场运动作为输入运动,鉴定了结构的合理自然周期。然而,当基础运动用作输入运动时,结构自然时段被认为是异常的。在未来的SFSI研究中应考虑这种现象。

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