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Comparison of viscoelastic models with a different number of parameters for transient simulations

机译:比较具有不同参数数量的粘弹性模型以进行瞬态仿真

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摘要

The numerical and analytical models used for transient simulations, and hence for the pressurized pipe system diagnosis, require the definition of a rheological component related to the pipe material. The introduction and the following widespread use of polymeric material pipes, characterized by a viscoelastic behavior, increased the complexity and the number of parameters involved in this component with respect to metallic materials. Furthermore, since tests on specimens are not reliable, a calibration procedure based on transient test is required to estimate the viscoelastic parameters. In this paper, the trade-off between viscoelastic component accuracy and simplicity is explored, based on the Akaike criterion. Several aspects of the calibration procedure are also examined, such as the use of a frequency domain numerical model and of different standard optimization algorithms. The procedure is tested on synthetic data and then it is applied to experimental data, acquired during transients on a high density polyethylene pipe. The results show that the best model among those used for the considered system implements the series of a spring with three Kelvin-Voigt elements.
机译:用于瞬态模拟以及因此用于加压管道系统诊断的数值模型和分析模型要求定义与管道材料有关的流变成分。以粘弹性为特征的聚合物材料管的引入及其随后的广泛使用,增加了该部件相对于金属材料的复杂性和参数数量。此外,由于样品测试不可靠,因此需要基于瞬态测试的校准程序来估算粘弹性参数。在本文中,基于Akaike准则,探索了粘弹性部件的精度和简单性之间的权衡。还检查了校准程序的几个方面,例如使用频域数值模型和使用不同的标准优化算法。该程序在合成数据上进行测试,然后应用于在高密度聚乙烯管道上瞬态过程中获取的实验数据。结果表明,在用于所考虑系统的模型中,最佳模型实现了具有三个开尔文-沃格特元素的弹簧系列。

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