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Two-level scheme for selection of primary degrees of freedom and semi-analytic sensitivity based on the reduced system

机译:基于简化系统的主要自由度和半解析灵敏度选择两级方案

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A number of approximate techniques have been developed to calculate the eigenvalues in a reduced manner. These schemes approximate the lower eigenvalues that represent the global behavior of the structures. The present study proposes a two-level condensation scheme (TLCS). This scheme consists of two-steps. In the first step, the candidate elements are selected for constructing the reduced system by energy estimation. In the second step, primary degrees of freedom are selected by sequential elimination from the candidate degrees of freedom linked to the selected elements through the first step. The proposed method saves computational cost effectively and recovers eigenvalues of the full system with high accuracy from the lowest to the truncated range of frequency. Moreover, besides the accuracies of the eigenvalue, well-constructed reduced system assures the accuracy of sensitivity of the eigenvalue compared to full system. In this paper, the semi-analytic design sensitivity of eigenvalues is obtained by the rigid body separation technique in reduced system. For the sensitivity calculation, the eigenvectors obtained from the reduced system are transformed into global system field. Numerical examples demonstrate the reliability of the eigenvalue and its sensitivity obtained by the reduced system through the comparison with conventional sensitivity schemes.
机译:已经开发了许多近似技术以减少的方式计算特征值。这些方案近似于代表结构整体行为的较低特征值。本研究提出了两级冷凝方案(TLCS)。该方案包括两个步骤。在第一步中,通过能量估计选择候选元素以构建简化系统。在第二步中,通过从第一步中链接到所选元素的候选自由度中进行顺序消除,来选择主要自由度。所提出的方法有效地节省了计算成本,并且从最低频率到截短频率范围都可以高精度地恢复整个系统的特征值。此外,除了特征值的准确性外,结构良好的精简系统还确保了特征值与完整系统相比的准确性。本文通过简化系统中的刚体分离技术,获得了特征值的半解析设计灵敏度。为了进行灵敏度计算,将从简化系统获得的特征向量转换为全局系统场。数值算例表明,通过与常规灵敏度方案的比较,简化系统获得的特征值及其灵敏度具有可靠性。

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