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Experimental and Numerical Study on Automotive Pleated Air Filters

机译:汽车褶皱空气过滤器的实验和数值研究

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Nowadays, the automotive engines are downsizing, thus offering limited space for engine intake air filter media. This results in higher aerosol velocity through the filter media. At a higher velocity, the aerosol particles reenter into the fluid stream and thereafter penetrate through the filter media. This causes significant reduction in filtration efficiency. Here, an attempt is made to understand the particle penetration behavior of automotive engine intake air filter media. To establish the flow field, numerical simulations are carried out on a panel type pleated air filter with pleat height 26 mm, pleat pitch 4.5 mm and pleat angle 2.50 degree. A series of tests are conducted using ISO 12103 A2 fine dust on a flat cellulosic paper filter media at a range of velocities derived numerically. The methodology followed for modeling the fibrous media using finite volume commercial CFD code for analyzing the flow field is presented. The calculations of pressure drop are compared with the experimental measurements. Further CFD calculations of the flow field in the pleat region serve as input concerning the velocities for flat sheet testing of dust loading. Filtration efficiency as a function of pressure drop is studied to understand the particle penetration during dust loading. An increase in particle penetration is observed with the increase in face velocity.
机译:如今,汽车发动机缩小了尺寸,从而为发动机进气空气过滤介质提供有限的空间。这导致通过过滤介质更高的气溶胶速度。在更高的速度下,气溶胶颗粒再入流体流,然后穿过过滤介质。这导致过滤效率显着降低。这里,尝试了解汽车发动机进气过滤介质的粒子穿透行为。为了建立流场,在面板型褶皱空气过滤器上进行数值模拟,褶高26mm,褶皱间距4.5mm和褶皱角2.50度。在数速度衍生的速度范围内使用ISO 12103 A2细粉体在扁平的纤维素纸过滤介质上进行一系列测试。呈现使用有限卷商业CFD码进行建模用于分析流场的纤维介质的方法。将压降计算与实验测量进行比较。褶皱区域中的流场的进一步CFD计算用作有关粉尘载荷的平板测试的速度的输入。研究了作为压降函数的过滤效率,以了解粉尘负载期间的颗粒渗透。随着面速度的增加,观察到颗粒穿透的增加。

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