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首页> 外文期刊>Chemical engineering journal >Large-eddy simulations of particle sedimentation in a longitudinal sedimentation basin of a water treatment plant. Part 2: The effects of baffles
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Large-eddy simulations of particle sedimentation in a longitudinal sedimentation basin of a water treatment plant. Part 2: The effects of baffles

机译:水处理厂纵向沉淀池中颗粒沉降的大涡模拟。第2部分:挡板的影响

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The process of particle sedimentation in a three-dimensional longitudinal basin with vertical baffles in a water treatment plant is studied using large-eddy simulations (LES). The objective of this study is to investigate the effect of the baffle installations on the particle settling performance of the sedimentation basin. The fluid mixture simulates typical contaminated water in which the contaminants are represented by a spectrum of 13 different particle sizes. The process of sedimentation of all classes of particles is simulated for tanks with zero, two, three and four baffles, respectively. The flow patterns, particle settling velocities, the particle settling efficiency and volume fraction are computed using LES and a multiphase model. The overall sedimentation efficiency of the basin for all the cases is calculated.Results show that the installation of baffles would effectively improve the performance of the tank in terms of settling. The baffles act as barriers and effectively suppress the horizontal velocities of the flow and force the particles to the bottom of the basin. Turbulence and vortices are generated at the shear zones near the baffles which significantly increase the settling velocity.The effect of varying number of baffles on the settling is also studied. Results indicate the performance of the basin increases with increasing number of baffles. The more the number of baffles the larger the suppression of the horizontal velocities and more chances the particles are forced to the bottom. The number of small eddies formed at the bottom of the basin also increases with the number of baffles. These results are important for the cost-effective design of longitudinal sedimentation basin in water treatment plants.
机译:使用大型涡流模拟(LES)研究了水处理厂中带有垂直挡板的三维纵向盆地中的颗粒沉降过程。本研究的目的是研究挡板装置对沉淀池颗粒沉降性能的影响。流体混合物模拟了典型的被污染的水,其中的污染物由13种不同粒径的光谱表示。对于分别具有零,两个,三个和四个挡板的储罐,模拟了所有类别颗粒的沉降过程。使用LES和多相模型计算流动模式,颗粒沉降速度,颗粒沉降效率和体积分数。计算了所有情况下流域的整体沉降效率。结果表明,安装挡板可以有效地提高池子的沉降性能。挡板充当屏障,并有效地抑制水流的水平速度,并将颗粒推向水池底部。折流板附近的剪切区会产生湍流和涡流,从而显着提高了沉降速度。还研究了折流板数量的变化对沉降的影响。结果表明,该流域的性能随着挡板数量的增加而增加。挡板的数量越多,对水平速度的抑制作用就越大,并且颗粒被压到底部的机会就越大。在水池底部形成的小涡流的数量也随着挡板数量的增加而增加。这些结果对于水处理厂纵向沉淀池的经济有效设计很重要。

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