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Modeling of a two stages electrostatic air precipitation process using response surface modeling

机译:使用响应面建模对两阶段静电空气沉淀过程进行建模

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Any industrial process needs to work with the optimal operating conditions and thus the evaluation of their robustness is a critical issue. A modeling of a laboratory-scale wire-to-plane two stages electrostatic precipitator for guiding the identification of the set point, is presented this in paper. The procedure consists of formulating recommendations regarding the choice of optimal values for electrostatic precipitation. A two-stages laboratory precipitator was used to carry out the experiments, with samples of wood particles of average granulometric size 10 μm. The parameters considered in the present study are the negative applied high voltage of the ionization stage, the positive voltage of the collection stage and the air speed. First, three "one-factor-at-a-time" experiments were performed followed by a factorial composite design experiments, based on a two-step strategy: 1) identify the domain of variation of the variables; 2) set point identification and optimization of the process.
机译:任何工业过程都需要在最佳工作条件下工作,因此对其耐用性的评估是一个关键问题。本文介绍了用于指导设定点识别的实验室规模的线对平面两级静电除尘器的建模。该程序包括制定有关静电沉淀最佳值选择的建议。使用两级实验室除尘器进行实验,平均粒度为10μm的木屑样品。本研究中考虑的参数是电离级施加的负电压,收集级的正电压和空气速度。首先,基于两步策略,进行了三个“一次一次因子”实验,然后进行了阶乘复合设计实验:1)识别变量的变化范围; 2)设定点的识别和优化过程。

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