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首页> 外文期刊>Urban water journal >Calibration of viscoelastic parameters by means of transients in a branched water pipeline system
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Calibration of viscoelastic parameters by means of transients in a branched water pipeline system

机译:分支输水管道系统中瞬变对粘弹性参数的校准

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摘要

In this paper, different arrangements of Kelvin-Voigt elements are implemented in an admittance matrix model to investigate the transient modeling of water distribution systems. The viscoelastic parameters are calibrated by experimental data acquired during a transient in a branched system of three HDPE pipes at the Water Engineering Laboratory of the University of Perugia, Italy. The dependence of the viscoelastic parameters on the branch characteristic time is investigated. Models with a single set of elements for all branches are compared with models with different sets of elements for each branch. When the same number of parameters is used, the former perform better than the latter. No evident correlation is found between the retardation times of the viscoelastic parameters and the branch characteristic times. The use of two measurement sections instead of one does not modify the calibration results significantly.
机译:在本文中,在导纳矩阵模型中实现了Kelvin-Voigt元素的不同排列,以研究水分配系统的瞬态建模。粘弹性参数通过在意大利佩鲁贾大学水工程实验室的三个HDPE管的分支系统中的瞬变过程中获得的实验数据进行校准。研究了粘弹性参数对分支特征时间的依赖性。将所有分支具有单个元素集的模型与每个分支具有不同元素集的模型进行比较。当使用相同数量的参数时,前者的性能要优于后者。在粘弹性参数的延迟时间和分支特征时间之间没有发现明显的相关性。使用两个测量部分代替一个测量部分不会显着改变校准结果。

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