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ASSESSMENT OF MODAL STRAIN ENERGY METHOD: ADVANTAGES AND LIMITATIONS

机译:模态应变能量的评估:优点和限制

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The Modal Strain Energy Method (MSEM) is widely used in practice for the prediction of damping levels in structures. MSEM is based on a fundamental assumption that the damped and the undamped mode shapes of a structure are identical. Therefore, when MSEM is to be used, it is essential to ensure that this assumption is an acceptable assumption. However, detailed information on the accuracy of the method as a function of the system parameters including modal (or mode shape) complexity is quite limited. In this paper, the performance of MSEM is assessed in terms of the damping levels of the structure, proportionality of damping distribution and/or the modal complexity. To do so, an effective finite element based MSE approach is proposed first. Then, a proportionally damped structure with different damping levels is modeled and the performance of MSEM is assessed as a function of the structural damping level. After that, a non-proportionally damped structure is studied in order to examine the performance of the method with respect to mode shape complexity. In all cases, a more accurate reference method, based on complex eigenvalue approach, is used for comparison purposes. Furthermore, a few definitions of mode shape complexity are utilized in order to quantify the mode shape complexity. The results show that as long as the mode shapes are real or close to being real, MSEM can predict the damping levels as well as the natural frequencies of a damped structure with good accuracy. However, the accuracy that can be achieved with MSEM decreases as mode shape complexity increases.
机译:模态应变能量法(MSEM)广泛用于实践中,用于预测结构中的阻尼水平。 MSEM基于结构的根本假设,结构的阻尼和未透明的模式形状是相同的。因此,当要使用MSEM时,必须确保这种假设是可接受的假设。然而,有关该方法的准确性的详细信息作为包括模态(或模式形状)复杂度的系统参数的函数的函数非常有限。本文在结构的阻尼水平,阻尼分布的比例和/或模态复杂性方面评估了MSEM的性能。为此,请先提出一种有效的基于元素的MSE方法。然后,模拟具有不同阻尼水平的比例阻尼结构,并评估了MSEM的性能作为结构阻尼水平的函数。之后,研究了非成比例的阻尼结构,以便对模式形状复杂性检查方法的性能。在所有情况下,基于复杂的特征值方法的更准确的参考方法用于比较目的。此外,利用了一些模式形状复杂度的定义,以便量化模式形状复杂度。结果表明,只要模式形状是真实的或靠近真实的,MSEM就可以预测阻尼水平以及具有良好精度的阻尼结构的自然频率。然而,随着模式形状复杂度的增加,MSEM可以实现的精度降低。

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