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Prediction of Aeration Performance for Inverted Umbrella Aerator Based on Dimensional Analysis

机译:基于尺寸分析的倒伞曝气器曝气性能预测

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As core equipment of the wastewater treatment process in chemical enterprises, the inverted umbrella aerator has been well studied in the areas of structural design and performance improvement. However, the relations between two devices which are geometrically and dynamically similar are far from having been thoroughly researched. This paper aims at investigating the relationships between geometrically and dynamically similar aerators and establishing a general performance prediction model for them. Based on dimensional analysis, the effect of structure on aeration performance is formulated by dimensionless relational expressions using the experimental data of reduced-scale aerators (reducedscale model), and thus the performance prediction mathematical model for other aerators with geometrical and dynamical similarities is established. The Froude number Fr is found to be the most important affecting parameter of the improved absorption number Y, which is the only dimensionless number characterizing aeration performance. Validation of the formulas is conducted through the comparison of predicted values and experimental data in two validation aerators whose scale differences to reduced-scale model are 33% and 66%, respectively. Finally, the maximum average relative error between predicted values and experimental data was 8.92%, which indicates that the formulas are reliable and applicable to the performance prediction of the scaled aerator through the data of its reduced-scale prototype.
机译:作为化工企业废水处理过程的核心设备,倒雨伞空气机在结构设计和性能改进方面得到了很好的研究。然而,几何和动态相似的两个设备之间的关系远远彻底研究。本文旨在调查几何和动态相似的曝气器之间的关系,并为它们建立一般性能预测模型。基于尺寸分析,结构使用减压曝气器(SciptScale模型)的实验数据制定了结构对曝气性能的影响,因此建立了其他具有几何和动态相似性的其他曝气器的性能预测数学模型。 FRoude号码FR被发现是改进的吸收号Y的最重要的影响参数,这是表征曝气性能的唯一无量纲数。通过比较预测值和两种验证曝气器中的预测值和实验数据的验证,其尺度差异分别为33%和66%。最后,预测值和实验数据之间的最大平均相对误差为8.92%,表示公式可靠,适用于通过其减小的原型的数据数据的缩放空气器的性能预测。

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