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首页> 外文期刊>Journal of Engineering Mechanics >Nonlinear Biaxial Structural Vibration under Bidirectional Random Excitation with Incident Angle by Tail-Equivalent Linearization Method
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Nonlinear Biaxial Structural Vibration under Bidirectional Random Excitation with Incident Angle by Tail-Equivalent Linearization Method

机译:尾部等效线性化方法在入射角双向随机激励下非线性双轴结构振动

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In this research the tail-equivalent linearization method (TELM) has been applied to a structure with biaxial behavior of materials, using the biaxial Bouc-Wen material model. The modeled structure has been subjected to independent bidirectional excitation with the incident angle with major axes of structure. The direct differentiation method (DDM) has been developed for calculating the response and its derivatives for the first time for the biaxial Bouc-Wen material model, where the application of DDM is more difficult compared with uniaxial Bouc-Wen models due to its coupled constitutive law of material. The method is applied to a structure with a rigid diaphragm, supported by four different columns. The structure is subjected to bidirectional and modulated filtered white noise excitations. The cumulative probability distribution function (CDF), probability density function (PDF), average rate of crossing, and first passage probability of displacement response are calculated for a column in the roof level of the structure. The results have been compared with those of Monte Carlo simulation presenting good agreement. The effects of nonlinearity degree and the levels of threshold have been investigated on the tail-equivalent linear system (TELS). The importance and effects of considering biaxial nonlinear behavior have been assessed by changing its relevant parameter in the Bouc-Wen model to obtain and compare different TELSs. The effects of incident angle have been investigated for independent components of excitation to find the most critical angle related to the minimum reliability index in TELM. Furthermore, system eccentricity, most critical incident angle for different responses, nonlinearity, and spectral intensity ratio of bidirectional excitation are considered.
机译:在这项研究中,使用双轴Bouc-Wen材料模型将尾部等效线性化方法(TELM)应用于具有双轴材料行为的结构。对模型结构进行了独立的双向激励,入射角与结构主轴一致。直接微分法(DDM)已被开发出来,用于首次计算双轴Bouc-Wen材料模型的响应及其导数,由于其耦合的本构关系,与单轴Bouc-Wen模型相比,DDM的应用更加困难物质定律。该方法适用于具有刚性隔膜的结构,该隔膜由四个不同的柱支撑。该结构受到双向和调制滤波白噪声激发。针对结构的屋顶层中的一列计算累积概率分布函数(CDF),概率密度函数(PDF),平均穿越率和位移响应的第一通过概率。将结果与蒙特卡罗模拟的结果进行了比较,结果吻合良好。研究了非线性度和阈值水平对尾等效线性系统(TELS)的影响。通过更改Bouc-Wen模型中的相关参数以获得和比较不同的TELS,已经评估了考虑双轴非线性行为的重要性和影响。对于励磁的独立分量,已经研究了入射角的影响,以找到与TELM中的最小可靠性指标相关的最大临界角。此外,还考虑了系统偏心率,不同响应的最关键入射角,非线性和双向激励的光谱强度比。

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