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Correlation of design parameters with performance for electrostatic precipitator. Part Ⅱ. Design of experiment based on 3D FEM simulation

机译:设计参数与静电除尘器性能的相关性。第二部分。基于3D有限元模拟的实验设计

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The performance of electrostatic precipitators (ESP) depends on their geometrical and operational parameters. The first part of a two-paper series developed and validated a three-dimensional model describing corona discharge, turbulent flow, and particle charging and tracking in the ESP. Based on the model developed in Part I, this paper correlates the design parameters with ESP performance by applying the design of experiment (DOE) approach. Through a full factorial two-level DOE, both individual and interactive effects of design parameters on ESP performance are studied. Five design parameters are investigated, including wire radius, collecting plate length, plate–plate spacing, applied voltage, and particle diameter. The strength of these effects is quantified with sensitivity factors, based on which the parameters and their interactions are ranked. The ranking changes with the extent of its variation from the nominal value. This analysis can be extended to other design factors and different types of ESPs.
机译:静电除尘器(ESP)的性能取决于其几何和运行参数。两篇论文系列的第一部分开发并验证了一个三维模型,该模型描述了电除尘器中的电晕放电,湍流以及粒子带电和跟踪。基于第一部分开发的模型,本文通过应用实验设计(DOE)方法将设计参数与ESP性能相关联。通过全因子两级DOE,研究了设计参数对ESP性能的个体和交互作用。研究了五个设计参数,包括线径,收集板长度,板-板间距,施加电压和粒径。这些效应的强度通过敏感度因子进行量化,根据敏感度因子对参数及其相互作用进行排序。排名随着其与标称值的变化程度而变化。该分析可以扩展到其他设计因素和不同类型的ESP。

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