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Modeling the effect of wind in rectangular settling tanks for water supply

机译:用矩形沉降坦克供水的效果建模

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A 2-D CFD model is applied to investigate the effect of co-current and counter-current wind velocities of up to 7.5m/s in the settling tanks of EYDAP Water Treatment Plant of Aharnes, in Greece, and the following conclusions are drawn: (1) without wind, the flow field is characterized by a large recirculation region with significant short-circuiting, while for windy conditions a two-layer flow is observed, in which the surface layer follows the wind direction. The suspended solids' concentration fields strongly depend on the corresponding flow fields. (2) Calculated local removal efficiencies, without wind, near water surface show a satisfactory agreement with measurements. When the sludge removal mechanism is operating, the calculated efficiency without wind is equal to 83.1%; this value is lower than the experimental value (86.0 +/- 1.0%) and the predicted value by a 3-D model (85.7%). When co-current wind velocity increases, short-circuiting increases and the efficiency decreases; however, not noticeably (0.3%). When counter-current wind velocity increases, short-circuiting is reduced and the efficiency increases by up to approximately 1.0%. (3) When the sludge removal mechanism is out of operation, the calculated efficiency without wind decreases to 68.1%, a value that is again lower than the experimental value (70.8 +/- 1.0%) and the predicted value by a 3-D model (70.9%); the wind effect is similar to the case of operating sludge removal mechanism, with a somehow larger difference of up to 1.3%.
机译:应用了2-D CFD模型,以研究希腊艾哈里斯的Eypap水处理厂的沉降罐中的电流和逆流风速度高达7.5m / s的效果,并提出了以下结论:(1)没有风,流场的特征在于具有显着短路的大的再循环区域,而对于刮风条件,观察到两层流动,其中表面层遵循风向。悬浮的固体的浓度场非常依赖于相应的流场。 (2)计算局部去除效率,无风,近水表面显示出令人满意的协议。当污泥去除机构运行时,无风的计算效率等于83.1%;该值低于实验值(86.0 +/- 1.0%)和3-D型(85.7%)的预测值。当共流风速增加时,短路增加,效率降低;但是,没有明显(<0.3%)。当逆流风速增加时,减小短路,效率增加到大约1.0%。 (3)当污泥去除机制失效时,无风的计算效率降至68.1%,该值再次低于实验值(70.8 +/- 1.0%)和预测值3-d模型(70.9%);风效应类似于操作污泥去除机制的情况,以某种方式差异高达1.3%。

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