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Energy-based response of simple structural systems by using simulated ground motions

机译:使用模拟地面运动的简单结构系统的能量 - 基于能量的响应

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For the last two decades, there has been a growing and remarkable attention on the energy-based design and assessment approaches for structural systems. These approaches have also been implemented to some of the national seismic design codes as alternative methods in addition to the traditional force-based design methodology. The underlying research has been often carried out by using actual ground motion records taken from many different earthquakes all over the world. However, such an attempt impairs the validity of the obtained results since it is generally not possible to construct a homogeneous ground motion record database with well-distributed source and ground motion parameters. In this study, in order to overcome the aforementioned disadvantage, a large set of simulated ground motion records are used in a parametric study to examine the influence of different intensity measures on the energy-based response of simple structural systems, i.e. single-degree-of-freedom (SDOF) systems. A set of ground motions is formed from simulation of potential events with a certain moment magnitude range, source-to-site distances and soil conditions. The simulations are performed on active faults around Erzincan city center located on the Eastern sections of North Anatolian Fault zone in Turkey. The output parameters are input energy, hysteretic energy and damping energy. The results show that the energy is a relatively stable parameter when compared to other response parameters. Hence energy seems to be a good candidate to be used in seismic design and assessment approaches.
机译:在过去的二十年中,对结构系统的基于能量的设计和评估方法产生了不断增长和显着的关注。除了以传统的基于力的设计方法之外,这些方法还被实施为一些国家地震设计代码作为替代方法。潜在的研究通常通过使用来自世界各地的许多不同地震所采取的实际地面运动记录进行。然而,这种尝试损害了所获得的结果的有效性,因为通常不可能用分布均匀的源和地面运动参数构造均匀的地面运动记录数据库。在这项研究中,为了克服上述缺点,一大组的模拟地面运动中的记录参数的研究被用于检查的不同强度的措施上简单的结构系统的基于能量的反应的影响,即,单度 - 自由(SDOF)系统。一组地面运动由模拟潜在事件的模拟形成,具有一定的时刻幅度范围,源地到现场的距离和土壤条件。对位于土耳其北安塔洛安断层区东部的埃尔昆旺市中心周围的积极故障进行了模拟。输出参数是输入能量,滞后能量和阻尼能量。结果表明,与其他响应参数相比,能量是相对稳定的参数。因此,能源似乎是用于地震设计和评估方法的良好候选者。

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