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Multistage Frequency-Domain Transient-Based Method for the Analysis of Viscoelastic Parameters of Plastic Pipes

机译:基于多级频域瞬态的塑料管粘弹性参数分析方法

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摘要

Plastic/viscoelastic pipes such as polyvinyl chloride (PVC), polyethylene (PE), and high-density polyethylene (HDPE) pipes have been increasingly applied in fluid piping systems. The understanding of the hydrodynamic behavior and features of such pipe materials are important in their practical applications. This paper develops an effective frequency-domain transient-based method (FDTBM) for the efficient and accurate identification of viscoelastic parameters of plastic pipes. The analytical expression of transient frequency response in a typical viscoelastic pipeline system is first derived to describe the dependence relationship among different factors and coefficients in the system (e.g., pipe and fluid properties). The obtained result is then applied to inversely identify the viscoelastic parameters of plastic pipes under different flow and operational conditions. A multistage analysis framework is proposed to enhance the robustness and effectiveness of the proposed FDTBM to obtain accurate and unique solutions of viscoelastic parameters for the plastic pipes used in this study. The proposed method and analysis framework have been validated and evaluated through various experimental tests and numerical simulations.
机译:塑料/粘弹性管道(例如聚氯乙烯(PVC),聚乙烯(PE)和高密度聚乙烯(HDPE)管道)已越来越多地应用于流体管道系统中。对此类管道材料的流体动力学行为和特性的理解在其实际应用中很重要。本文开发了一种有效的基于频域瞬态的方法(FDTBM),用于高效,准确地识别塑料管的粘弹性参数。首先导出典型粘弹性管道系统中瞬态频率响应的解析表达式,以描述系统中不同因素和系数之间的依赖关系(例如,管道和流体特性)。然后将获得的结果应用于在不同流量和操作条件下逆向识别塑料管的粘弹性参数。提出了一个多阶段分析框架,以增强所提出的FDTBM的鲁棒性和有效性,从而获得用于本研究的塑料管的粘弹性参数的准确而独特的解决方案。通过各种实验测试和数值模拟,对所提出的方法和分析框架进行了验证和评估。

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