首页> 外文期刊>Journal of Hydrodynamics >EXPERIMENTAL AND NUMERICAL INVESTIGATIONS ON SECONDARY FLOWS AND SEDIMENTATIONS BEHIND A SPUR DIKE
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EXPERIMENTAL AND NUMERICAL INVESTIGATIONS ON SECONDARY FLOWS AND SEDIMENTATIONS BEHIND A SPUR DIKE

机译:防洪堤下二次流和沉积物的实验和数值研究

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摘要

For a physical model of the approach navigation channel of Three Gorges Project(TGP), flow patterns around a non-submerged spur dike placed as a mountain in a long rectangular glass flume were experimentally investigated with and without "sucking-spouting" water respectively. Based on rigid lid assumption and Dynamic Smagorinsky Model, all these vortex flows around the spur dike were numerically simulated and analyzed, which probably affect the whole flow field and then probably lead to sedimentations for silt-laden two-phase flows. Meanwhile, silt-laden flows were also investigated experimentally. Both the secondary flow region and the silt sedimentations downstream of the spur dike decrease greatly with "sucking-spouting" water compared to those ones without "sucking-spouting" water. The Finite Volume Method (FVM) was used to discretize the governing equations together with a staggered grid system, where the second order difference is employed for the diffusion terms and the source terms while the upwind difference QUICK is used for the convection terms. The computational results are all in fairly good agreement with the experimental data.
机译:对于“三峡计划”(TGP)进场导航通道的物理模型,分别对有和没有“喷出”水的实验研究了放置在长矩形玻璃水槽中的非浸没丁坝周围的流动模式。基于刚性盖假设和动态Smagorinsky模型,对丁坝周围的所有这些涡流进行了数值模拟和分析,这可能会影响整个流场,然后可能导致含沙两相流的沉积。同时,还对含泥沙流进行了实验研究。与没有“喷出”水的水流相比,丁坝下游的次要流动区域和淤泥沉降都大大减少。有限体积法(FVM)与交错网格系统一起用于离散控制方程,其中二阶差分用于扩散项和源项,而迎风差分QUICK则用于对流项。计算结果与实验数据完全吻合。

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