CFD Simulation of hydraulic jump in the USBR type-III stilling basin with converged walls

Fareena Fatima, Muhammad Kaleem Sarwar, F. U. Haq, Ali Raza
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Abstract

Hydraulic jump is used to dissipate excessive flow energy in stilling basin to control erosion on downstream side. The literature review revealed that the convergence of the side walls in a USBR type II stilling basin has enhanced energy dissipation by stabilizing the hydraulic jump. Taking this into account, a Computational Fluid Dynamics (CFD) model was created using CFD code to analyze the hydraulic efficiency of a USBR type III stilling basin with varying degrees of side wall convergence. Additionally, alterations were made to the standard Impact Blocks geometry to evaluate their effect on energy dissipation. The side walls of stilling basin were converged from 0.5° to 2.5° (with an increment of 0.50). Study results indicated an increase in hydraulic jump efficiency from 1.6 to 14.5% due to increase in wall convergence. Modified Friction Blocks also enhanced the energy dissipation up to 2%. Post-jump Froude number values were found in acceptable range of 0.6 to 0.78. The optimal hydraulic performance of stilling basin was noted when wall convergence angle of 2.5° was used along with modified Friction Blocks. Hydraulic performance of modified stilling basin may be investigated during gated operation of the model.
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带会聚壁的 USBR III 型静压池水力跃迁的 CFD 模拟
水力跃迁用于消散静水池中过多的水流能量,以控制下游侧的侵蚀。文献综述显示,USBR II 型静压水池中侧壁的收敛可通过稳定水力跃迁来增强消能效果。有鉴于此,我们使用 CFD 代码创建了一个计算流体动力学(CFD)模型,以分析侧壁收敛程度不同的 USBR III 型静流池的水力效率。此外,还对标准冲击块的几何形状进行了修改,以评估其对能量耗散的影响。静水池的侧壁收敛角度从 0.5° 到 2.5°(增量为 0.50)。研究结果表明,由于侧壁收敛的增加,水力跃迁效率从 1.6% 提高到 14.5%。改良摩擦块也将能量耗散提高了 2%。跳水后的 Froude 数值在 0.6 至 0.78 的可接受范围内。当采用 2.5° 的壁面收敛角和改良摩擦块时,静水池的水力性能达到最佳。在模型的门控运行过程中,可对改进型静流池的水力性能进行研究。
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