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首页> 外文期刊>Canadian Journal of Civil Engineering >Experiments and numerical modeling of baffle configuration effects on the performance of sedimentation tanks
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Experiments and numerical modeling of baffle configuration effects on the performance of sedimentation tanks

机译:挡板配置对沉淀池性能影响的实验与数值模拟

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摘要

The hydraulic efficiency of sedimentation basins is reduced by short-circuiting, circulation zones and bottom particle-laden jets. Baffles are used to improve the sediment tank performance. In this study, laboratory experiments were used to examine the hydrodynamics of several baffle configurations. An accompanying numerical analysis was performed based on the 2-D Reynolds-averaged Navier-Stokes equations along with the k- turbulence closure model. The numerical model was supplemented with the volume-of-fluid technique, and the advection-diffusion equation to simulate the dynamics of particle-laden flow. Model predictions compared well with the experimental data. An empirical function was constructed to indicate the location and amount of sediment collected in the tank. Hydraulic performance was determined for given baffle locations and heights. The results revealed that, for the laboratory setup, a baffle half way along its length decreases its performance, while a baffle much closer to its inlet and with height 2530% of water depth improves efficiency.
机译:短路,循环区和底部装有颗粒的射流会降低沉淀池的水力效率。挡板用于改善沉淀池性能。在这项研究中,实验室实验被用来检查几种挡板结构的流体动力学。基于二维雷诺平均Navier-Stokes方程以及k湍流闭合模型进行了伴随的数值分析。用流体体积技术和对流扩散方程对数值模型进行了补充,以模拟含粒子流的动力学。模型预测与实验数据进行了比较。构造了一个经验函数来指示池中收集的沉积物的位置和数量。确定了给定挡板位置和高度的水力性能。结果表明,对于实验室设置,挡板沿其长度的一半会降低其性能,而挡板离其入口更近且高度为水深的2530%,可以提高效率。

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