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Characterization of pressure drop through two-stage particulate air filters

机译:通过两级微粒空气过滤器的压降表征

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摘要

A common form of particulate air filters is the pleated filter. The pressure drop and particle removal efficiency are the most important performance indicators of this filter. A computational fluid dynamics (CFD) tool was utilized to predict the pressure drop of a two-stage filter cartridge. In the CFD analysis, the flow through the porous medium was used as an indicator of the pressure drop in the filter. The pressure drop of the two-stage filter was predicted through an experiment involving a single-stage filter at 1 m/s. The pleated filter cartridge size was 361 x 277 x 25 (L x W x H) mm(3) and the pitch of the pleats was 3.8 mm. Four classes of filters (E10, E11, E12, H13) were used in the experiments. The filter resistances of the four grades were estimated through the single-stage filter experiment, and the pressure drop of the two-stage filter was predicted at 0.5-1 m/s. To verify the predicted CFD analysis values, two-stage filters were fabricated and tested at 0.75 m/s. For the E12 + H13 combination filter, the analytical value was 111 Pa, which agreed with the experimental value of 109.9 Pa. The other filters exhibited an error of <2%.
机译:常见的颗粒空气过滤器是褶皱过滤器。压降和颗粒去除效率是该过滤器最重要的性能指标。计算流体动力学(CFD)工具用于预测两级滤筒的压降。在CFD分析中,通过多孔介质的流量用作过滤器中压降的指示剂。通过涉及1米/秒的单级过滤器的实验预测了两级过滤器的压降。褶皱滤筒尺寸为361×277×25(L x W x H)mm(3),褶皱的间距为3.8mm。在实验中使用了四类过滤器(E10,E11,E12,H13)。通过单级滤波器实验估计四个等级的滤水器电阻,并且预测了两级过滤器的压降在0.5-1m / s。为了验证预测的CFD分析值,制造了两级过滤器并在0.75米/秒测试。对于E12 + H13组合过滤器,分析值为111Pa,其实验值109.9 PA。其他滤波器呈现出<2%的误差。

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