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FINITE ELEMENT ANALYSIS AND T_(10) OPTIMIZATION OF OZONE CONTACTORS

机译:臭氧接触器的有限元分析和T_(10)优化

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A finite element analysis (FEA) computer program was used to model the hydraulic characteristics and to predict the corresponding residence time distribution (RTD) curves for four full-scale ozone contactors with hydraulic capacities ranging from 14.5 to 394 mVmin (5.5 to 150 mgd) . On average, model predictions for contactor efficiency (T_(10)/HDT) were within 7.9% of actual test values. The Metropolitan Water District of Southern California (Metropolitan) is using the finite element program as a design tool to optimize the hydraulics of future ozone contactors. For one template model, results from several optimization runs are presented which confirm that T_(10)/HDT increases with increasing depth-to-length (D/L) ratio and which indicate that by adding two features, vanes or wall foils, the T_(10)/HDT is improved from 0.63 to 0.68 or to 0.66, respectively. Results from the template model also indicate that the T_(10)/HDT is unchanged with the addition of a single configuration of corner fillets.
机译:使用有限元分析(FEA)计算机程序对水力特性进行建模并预测四个水力范围为14.5至394 mVmin(5.5至150 mgd)的满量程臭氧接触器的相应停留时间分布(RTD)曲线。平均而言,接触器效率的模型预测值(T_(10)/ HDT)在实际测试值的7.9%以内。南加州大都市水区(大都市)正在使用有限元程序作为设计工具来优化未来臭氧接触器的液压系统。对于一个模板模型,显示了来自多个优化运行的结果,这些结果确认T_(10)/ HDT随着深度与长度(D / L)比的增加而增加,并且表明通过添加两个特征(叶片或墙箔), T_(10)/ HDT分别从0.63提高到0.68或0.66。模板模型的结果还表明,通过添加单个圆角圆角配置,T_(10)/ HDT保持不变。

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