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首页> 外文期刊>Journal of Pipeline Systems Engineering and Practice >Numerical Modeling of Depth and Location of Scour at Culvert Outlets under Unsteady Flow Conditions
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Numerical Modeling of Depth and Location of Scour at Culvert Outlets under Unsteady Flow Conditions

机译:不稳定流动条件下涵洞出口深度和地点的数值模型

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For safe design of culverts, the estimation of scour depth downstream of the culvert outlet is one of the most remarkable considerations. Poor design of culverts inevitably leads to destruction and increases expenditures on management and rehabilitation. The objective of this study is to investigate the performance of numerical models in predicting scour depth and its location downstream of box culverts in unsteady flow conditions. Culverts with unblocked and partially blocked outlets were used, and the predictions of two turbulence methods, namely renormalization group (RNG) and k-epsilon, were compared. Comprehensive experimental data of box culverts from the literature were used and the numerical models were performed in commercially available software. The downstream profile of scour development, maximum scour depth, and its location were obtained and compared with observed data. It was found that the numerical model was in good agreement with the experimental data. In both turbulence models, the scour depth increased with increase of discharge in the raising limb of the hydrograph, whereas for lower discharges in the falling limb of the hydrograph, the scour depth decreased. (C) 2021 American Society of Civil Engineers.
机译:为了安全地设计涵洞,涵洞出口下游的冲刷深度的估计是最显着的考虑之一。涵洞的差不可避免地导致破坏并增加对管理和康复的支出。本研究的目的是探讨数值模型在预测冲刷深度及其在非定常流动条件下盒涵洞下游的位置的性能。使用具有未阻止和部分堵塞的出口的涵洞,比较了两个湍流方法,即重整化组(RNG)和K-EPSILON的预测。使用文献的盒子涵洞的综合实验数据,并在市售的软件中进行数值模型。获得了冲刷开发,最大冲刷深度及其位置的下游轮廓,并与观察到的数据进行比较。发现数值模型与实验数据很好。在两个湍流模型中,冲刷深度随着水文编程的升降肢体的放电增加而增加,而用于较低的水管下降的放电,冲刷深度降低。 (c)2021年美国土木工程师协会。

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