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首页> 外文期刊>Journal of hydraulic research >Obstacle-Reynolds-number based analysis of local scour at submerged cylinders
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Obstacle-Reynolds-number based analysis of local scour at submerged cylinders

机译:基于障碍物-雷诺数的浸入式气瓶局部冲刷分析

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摘要

A simple process-based, analytical approach is developed and validated herein to determine the local scour at obstacles in the fluvial environment. It is based on the obstacle Reynolds and Froude numbers. Clear-water flume experiments were conducted to investigate the local scour depths at submerged cylinders in coarse uniform sand. The resulting scour depths were correlated with an analytical model and validated with two data sets on local scour at submerged and emergent cylinders. The size of the projected frontal obstacle area in relation to the mean flow velocity has a significant effect on the scour hole shape and depth. A power law function is derived that satisfactorily describes the present scour depth data. The approach is limited to near-equilibrium clear-water scour, uniform sediment and excludes particle density effects.
机译:本文开发并验证了一种基于过程的简单分析方法,以确定河流环境中障碍物的局部冲刷情况。它基于雷诺数和弗洛德数的障碍物。进行了清水水槽实验,以研究粗糙均匀砂土中浸没圆柱体的局部冲刷深度。将产生的冲刷深度与一个分析模型相关联,并用两个关于淹没和出水圆柱体局部冲刷的数据集进行验证。相对于平均流速而言,投影的前方障碍物区域的大小对冲孔的形状和深度有重大影响。导出幂律函数,该函数可以令人满意地描述当前冲刷深度数据。该方法仅限于接近平衡的清水冲刷,均匀的沉积物,并且不包括颗粒密度影响。

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