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Electrohydrodynamic dryer: Effect of emitters' density and gap between discharge and collecting electrodes

机译:电流动力干燥机:发射器密度和放电和收集电极之间的间隙的影响

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This paper presents the results of experimental study and mathematical simulation of multi-pin electrohydrodynamic dryer as a function of emitters' density and a gap between discharge and collecting electrodes. Experimental data for multi-pin electrodes with different emitters' spacing 1 x 1, 2 x 2, 3 x 3, 4 x 4, 6 x 6 cm and different gaps between electrodes at 2.0, 2.5, 3.0, 3.5, and 4.0 cm have been approximated with Warburg and Stuetzer models. Stuetzer model appears to be more accurate fit to experimental data for all electrode geometries. It also allowed decomposition of partial effects of emitters' density and the gap between electrodes. Effect of emitters' density was accounted through dimensionless geometry factor g(o). Using modified Stuetzer model, current density of the multi-pin electrode could be predicted as a function of voltage, gap and emitters' density, which allows scaling up the multi-pin dryers for industrial applications.
机译:本文介绍了多针电流动力干燥机的实验研究和数学模拟的结果,作为发射器密度的函数和放电和收集电极之间的间隙。 具有不同发射器间距1×1,2×2,3×3,4×4,6×6cm的多针电极的实验数据,电极之间的不同间隙在2.0,2.5,3.0,3.5和4.0cm之间 被Warburg和Stuetzer模型近似。 STUETZER模型似乎更准确地适合所有电极几何形状的实验数据。 它还允许分解发射器密度的部分效应和电极之间的间隙。 通过无量纲几何因子G(O)占发射仪密度的影响。 使用改进的STUETZER型号,可以预测多引脚电极的电流密度作为电压,间隙和发射仪密度的函数,这允许将多针干燥机缩放为工业应用。

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