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首页> 外文期刊>Separation and Purification Technology >Assessment of a novel spiral hydraulic flocculation/sedimentation system by CFD simulation, fuzzy inference system, and response surface methodology
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Assessment of a novel spiral hydraulic flocculation/sedimentation system by CFD simulation, fuzzy inference system, and response surface methodology

机译:通过CFD模拟,模糊推理系统和响应面方法评估新型螺旋液压絮凝/沉淀系统

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Computational fluid dynamics (CFD) was used for hydrodynamic modeling of flocculation and sedimentation experiments in a novel spiral hydraulic flocculation/sedimentation system. The experiments were conducted by different flow rates and different internal geometry to obtain different flocculation times and velocity gradients. In all experiments, the velocity gradient was gradually decreased with depth showing very smooth tapered flocculation which is preferred in hydraulic flocculation. The results of velocity gradient that obtained from the CFD simulation were used to investigate the influence of velocity gradient on turbidity and NOM removal in terms of specific ultraviolet absorbance (SUVA) and dissolved organic carbon (DOC). The experimental results revealed high influence of velocity gradient on reduction of NOM and turbidity. Fuzzy inference system (FIS) and response surface methodology (RSM) were used for modeling the influence of initial SUVA, DOC, and turbidity with velocity gradient and flocculation time on the treatment efficiency. Both methods were suitable for describing the treatment process, however, fuzzy inference model validated the experimental results with higher correlation. (C) 2016 Elsevier B.V. All rights reserved.
机译:计算流体动力学(CFD)用于新型螺旋水力絮凝/沉降系统中絮凝和沉降实验的流体动力学建模。通过不同的流速和不同的内部几何形状进行实验,以获得不同的絮凝时间和速度梯度。在所有实验中,速度梯度随深度逐渐减小,显示出非常平滑的锥形絮凝,这在水力絮凝中是优选的。通过CFD仿真获得的速度梯度结果用于研究速度梯度对浊度和NOM去除的影响,具体取决于比紫外线吸收率(SUVA)和溶解有机碳(DOC)。实验结果表明,速度梯度对降低NOM和浊度有很大影响。使用模糊推理系统(FIS)和响应面方法(RSM)来模拟初始SUVA,DOC和浊度以及速度梯度和絮凝时间对处理效率的影响。两种方法都适合描述处理过程,但是,模糊推理模型验证了实验结果具有较高的相关性。 (C)2016 Elsevier B.V.保留所有权利。

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