粒状顺层河流纵向冲刷过程的三维数值模拟方法分析

Nelson Cely Calixto, Melquisedec Cortés Zambrano, Alberto Galvis Castaño, Gustavo Carrillo Soto
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引用次数: 0

摘要

在河流中,纵墙是直接支撑在河岸上的防护结构,常被用作水力防护,防止水流冲刷河岸。然而,这些构造有可能阻塞流动并产生侵蚀过程,从而逐渐恶化该区域的冲刷,导致断层和其他问题。目前的研究使用Flow-3D软件来了解具有分级良好的颗粒河床的河流纵向壁面底部的冲刷过程。实验数据来自一个具有纵向墙和分级良好的颗粒床的河流的物理模型来验证模型。研究使用flow - 3d程序检测了平均流速及其对纵向壁面冲刷行为的影响。研究结果表明,Flow-3D模型可以改善调试过程的评估,因为它提供了一个有用的答案,与物理模型得出的实验数据非常吻合。在0.07 m网格上的验证表明,Flow-3D模型可以真实地模拟沿纵向壁面的冲刷过程。总的来说,本研究的结果表明,Flow-3D软件可以成为预测具有分级良好的颗粒床和纵向壁的河流冲刷过程的有用工具。对于那些对设计和优化水工结构以减轻冲刷影响感兴趣的工程师和研究人员来说,这一点尤为重要,因为它提供了一个与物理模型得出的实验数据密切匹配的有用答案
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Analysis of a three-dimensional numerical modeling approach for predicting scour processes in longitudinal walls of granular bedding rivers
In rivers, longitudinal walls are protective structures that are directly supported on the riverbank are frequently used as hydraulic prevent the current from eroding the bank and causing scouring. However, these structures have the potential to block flow and produce erosive processes that progressively worsen scour in their area, leading to faulting and other problems. The current study used Flow-3D software to understand the scour process at the base of longitudinal walls in rivers with a well-graded granular bed. Experimental data from a physical model replicating a river with a longitudinal wall and a well-graded granular bed were used to validate the model. The investigation examined the average flow velocity and its effects on scour behavior along the longitudinal wall using the Flow-3D program. The findings showed that the Flow-3D model could improve the evaluation of debugging processes, because it provided a useful answer that closely matched the experimental data derived from the physical model. Validation with a 0.07 m mesh demonstrated that the Flow-3D model could faithfully simulate the scour process along the longitudinal wall. Overall, the findings of this study suggest that the Flow-3D software can be a useful tool for predicting the scouring process in rivers with well-graded granular beds and longitudinal walls. This is particularly important for engineers and researchers who are interested in designing and optimizing hydraulic structures to mitigate the effects of scouring, because it provided a useful answer that closely matched the experimental data derived from the physical model
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来源期刊
EUREKA: Physics and Engineering
EUREKA: Physics and Engineering Engineering-Engineering (all)
CiteScore
1.90
自引率
0.00%
发文量
78
审稿时长
12 weeks
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