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Modeling Filter Bypass: Impact on Filter Efficiency

机译:过滤器旁路建模:对过滤器效率的影响

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摘要

Current models and test methods for determining filter efficiency ignore filter bypass, the air that circumvents filter media because of gaps around the filter or filter housing. In this paper, we develop a general model to estimate the size-resolved particle removal efficiency, including bypass, of HVAC filters. The model applies the measured pressure drop of the filter to determine the airflow through the bypass cracks and accounts for particle loss in the bypass cracks. We consider a particle size range of 0.01 to 10 μm, nine typical commercial and residential filters in clean and dust-loaded configurations, and a wide range of bypass gaps typical of those found in real filter installations. The model suggests that gaps on the order of 1 mm around well-seated filters have little effect on the performance of most filters. For high pressure drop filters, small gaps decrease filter performance and large gaps substantially decrease filter performance. Because higher efficiency filters also typically have a larger pressure drop, bypass tends to have a larger effect on high performance filters. The results provided here suggest that bypass can dramatically affect filter performance.
机译:用于确定过滤器效率的当前模型和测试方法忽略了过滤器旁路,因为过滤器或过滤器外壳周围存在间隙,空气绕过了过滤介质。在本文中,我们开发了一个通用模型来估计HVAC过滤器的尺寸分辨颗粒去除效率(包括旁路)。该模型将应用测得的过滤器压降来确定通过旁路裂纹的气流,并考虑旁路裂纹中的颗粒损失。我们考虑的粒径范围为0.01到10μm,九个典型的商用和民用过滤器处于清洁和粉尘加载配置,并且在实际过滤器安装中发现了宽广的旁路间隙。该模型表明,位置良好的过滤器周围大约1毫米的间隙对大多数过滤器的性能影响很小。对于高压降过滤器,小间隙会降低过滤器性能,大间隙会大大降低过滤器性能。因为效率更高的过滤器通常也具有较大的压降,所以旁路往往会对高性能过滤器产生更大的影响。此处提供的结果表明,旁路会极大地影响滤波器性能。

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