首页> 外文期刊>Journal of Hydraulic Engineering >Predicting Equilibrium Scour-Hole Geometry near Angled Stream Deflectors Using a Three-Dimensional Numerical Flow Model
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Predicting Equilibrium Scour-Hole Geometry near Angled Stream Deflectors Using a Three-Dimensional Numerical Flow Model

机译:使用三维数值流模型预测斜流偏转器附近的平衡冲刷孔几何

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Stream rehabilitation projects often involve the installation of instream structures such as flow deflectors. The objective of this study is to use the output of a three-dimensional numerically simulated flow field over a flat, predeformation bed to predict the planform extent of the equilibrium scour hole near stream deflectors of varying angles. It is shown that the upstream extent of the simulated flow separation zone determines the upstream limit of scour, whereas the lateral scour extent at the nose of the deflector is determined by the width of the separation zone. Further, scour depths are greatest in regions where strong downwelling (negative vertical velocity) exists, and the position of the local minimum dynamic pressure point in the simulated flow field defines the downstream limit of scouring. The results have implications for future design of habitat improvement structures where different angles and lengths of structures could potentially be tested prior to their implementation to determine the resultant scour geometry.
机译:溪流修复项目通常涉及安装溪流结构,例如导流板。这项研究的目的是利用在平坦的预变形床上的三维数值模拟流场的输出,以预测在不同角度的流偏转器附近的平衡冲刷孔的平面范围。结果表明,模拟流动分离区的上游范围决定了上游冲刷极限,而偏转器前端的横向冲刷程度则取决于分离带的宽度。此外,冲刷深度在存在强烈下沉(负垂直速度)的区域中最大,并且局部最小动压点在模拟流场中的位置定义了冲刷的下游极限。研究结果对未来栖息地改善结构的设计具有重要意义,该结构可能在实施之前先测试不同角度和长度的结构,以确定最终冲刷的几何形状。

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