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首页> 外文期刊>Journal of hydraulic research >Viscoelastic models for the simulation of transients in polymeric pipes
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Viscoelastic models for the simulation of transients in polymeric pipes

机译:用于模拟聚合物管道瞬变的粘弹性模型

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摘要

In this paper simple viscoelastic models are implemented to assess their reliability in the simulation of transients in polymeric pipes. Two approaches are followed, i.e. the combination of elastic and viscous elements based on ordinary derivatives, and the use of fractional elements, based on fractional derivatives. The implementation of the viscoelastic component in an efficient numerical model, based on the frequency domain integration, allows the direct scrutiny of the optimization function used in the calibration and provides some general remarks about the viscoelastic parameter estimation. The numerical simulations are compared with the experimental data acquired during transient tests with pipes made of high density polyethylene (HDPE) and oriented polyvinyl chloride (PVC-O). The results show that the convergence toward the optimal solution depends in a different manner on the model parameters. The fractional model performs better than the others, although further studies are needed to verify its reliability and efficiency.
机译:本文采用简单的粘弹性模型来评估其在聚合物管道瞬态仿真中的可靠性。遵循两种方法,即基于普通导数的弹性和粘性元素的组合,以及基于分数导数的分数元素的使用。在有效数值模型中基于频域积分实现粘弹性组件,可以直接检查校准中使用的优化函数,并提供有关粘弹性参数估计的一些一般性说明。将数值模拟与使用高密度聚乙烯(HDPE)和定向聚氯乙烯(PVC-O)制成的管道进行瞬态测试期间获得的实验数据进行比较。结果表明,朝向最优解的收敛以不同方式取决于模型参数。分数模型的性能优于其他模型,尽管需要进一步研究以验证其可靠性和效率。

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