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Modeling method of element Rayleigh damping for the seismic analysis of a 3D FEM model with multiple damping properties

机译:多次阻尼特性对3D FEM模型抗震分析的元素瑞利阻尼的建模方法

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摘要

Damping modeling is important for the accurate evaluation of the seismic response of structures. Our group previously reported a damping modeling method using element Rayleigh damping and evaluated the effectiveness using a simple lumped-mass model with multiple damping properties; however, the effectiveness of the method was not evaluated for three-dimensional (3D) finite element method (FEM) models with multiple damping properties. Moreover, further studies showed that the method needed to be improved to be applied to 3D FEM models. Therefore, the method has been improved to enable application to the seismic analysis of 3D FEM models, and the effectiveness of the method has been evaluated. The proposed method uses a weighted least-squares method to automatically determine the coefficients of element Rayleigh damping. The weighted least-squares method minimizes the differences between the modal damping ratios to be modeled and those given by element Rayleigh damping. Although all modal damping ratios in a simple lumped-mass model were used for damping modeling in our previous study, obtaining them for 3D FEM models is impractical because these models have more natural modes than simple lumped-mass models. Therefore, we used modal damping ratios below a cut-off frequency. The effectiveness of the proposed method was evaluated by comparing it with conventional methods in terms of the modeling errors related to the modal damping ratios and the maximum absolute acceleration. The proposed method tended to have lower errors than the conventional methods and is concluded to be more effective for the seismic analysis of 3D FEM models with multiple damping properties. The proposed method can automatically determine the coefficients of element Rayleigh damping and can more accurately model the damping properties of analysis models, indicating that the proposed method is a powerful tool for the seismic analysis of 3D FEM models with multiple damping properties.
机译:阻尼建模对于准确评估结构的地震响应是重要的。我们的小组以前报道了一种使用元素瑞利阻尼的阻尼建模方法,并使用具有多种阻尼性能的简单集总质量模型进行了评估的有效性;然而,没有针对多阻尼特性的三维(3D)有限元方法(FEM)模型评估该方法的有效性。此外,进一步的研究表明,需要改进的方法以应用于3D FEM模型。因此,已经改进了该方法以使应用于3D FEM模型的地震分析,并且已经评估了该方法的有效性。该方法使用加权最小二乘法自动确定元素瑞利阻尼的系数。加权最小二乘法最小化要建模的模型阻尼比和由元素瑞利阻尼给出的差异。尽管在我们以前的研究中使用简单的大规模模型中的所有模态阻尼比用于阻尼建模,但是为3D FEM模型获得它们是不切实际的,因为这些型号具有比简单的大规模模型更多的自然模式。因此,我们使用了低于截止频率的模态阻尼比。通过将其与与模型阻尼比和最大绝对加速度的建模误差与常规方法进行比较来评估所提出的方法的有效性。所提出的方法倾向于与常规方法具有较低的误差,并且得出结论是对于具有多个阻尼性质的3D FEM模型的地震分析更有效。所提出的方法可以自动确定元素瑞利阻尼的系数,并且可以更准确地模拟分析模型的阻尼特性,表明该方法是具有多个阻尼特性的3D FEM模型的地震分析的强大工具。

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