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Application of Computational Fluid Dynamics for Optimal Design of Horizontal-Flow Baffled-Channel Powdered Activated Carbon Contactors

机译:计算流体动力学在水平流折流通道粉状活性炭接触器优化设计中的应用

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摘要

For more efficient design of a horizontal-flow baffled-channel powdered activated carbon (PAC) contactor (hBPC), which might be used to cope with taste and odor problems at conventional water treatment plants, computational fluid dynamics (CFD) using FLOW-3D was applied. In order to verify the performance of the CFD simulations, the experimental results of tracer tests from a pilot-scale hBPC were compared to those from the simulation. Results from the CFD simulation were very similar to those of the tracer tests. Velocity distributions showed that there were stagnant regions on the back side of the baffles. These stagnant regions would be expected to decrease the overall adsorption efficiency of the PAC particles. The size of the stagnant regions and retention times in the simulated hBPC increased as the length to width (L/W) ratio increased and the bend width decreased. The L/W ratio, bend width, and the number of baffles for optimal design of the hBPC were successfully generated by the simulation. When designing a full-scale hBPC, the designer should consider the L/W ratio, number of baffles, and bend width in order to maximize the hBPC performance.
机译:为了更有效地设计水平流折流通道粉状活性炭(PAC)接触器(hBPC),可用于解决传统水处理厂的口感和气味问题,请使用FLOW-3D进行计算流体动力学(CFD)已应用。为了验证CFD仿真的性能,将中试规模hBPC的示踪剂测试的实验结果与仿真的结果进行了比较。 CFD模拟的结果与示踪剂测试的结果非常相似。速度分布显示挡板的背面有停滞区域。这些停滞区域将有望降低PAC颗粒的总体吸附效率。随着长宽比(L / W)的增加和弯曲宽度的减小,模拟hBPC中的停滞区域的大小和保留时间会增加。通过仿真成功地生成了L / W比,弯曲宽度和用于hBPC优化设计的折流板数量。设计全尺寸hBPC时,设计人员应考虑长宽比,折流板数量和弯曲宽度,以最大化hBPC性能。

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