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An optimum design for air filter housing-louver: Enhancing filter life-time

机译:空气过滤器外壳的最佳设计 - 百叶窗:增强过滤器寿命

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The design of filter housing and louver have been focused on the filter protection from rain. Up till now the effect of air-flow behavior on the filter life-span has not been considered. All filters have to be changed at the same time, which causes expensive maintenance and the plant to be shut down. Sometimes, the filter needs to be changed earlier than its real-life. The main aim of this work is to design a louver shape which obtains a consistent airflow through the filter housing in each channel. The airflow through the filter housing of four different shapes of the louver were simulated in two-dimensional models. The filter size was fixed at 60?×?60?cm. The three filters were set series for the filter housing height at 180?cm. CFD models used in this work to determine the optimum filter housing and louver shape for pressure drop reduction and uniform airflow distribution. The results showed that the optimum filter housing angle was found to be 45° at the largest louver size with the same size of inlet and outlet channels (H/L/Z?=?1/1/1). The design of filter housing and louver can be indicated the best airflow behavior and the optimum cost.
机译:过滤器外壳和百叶窗的设计集中在雨中的过滤器保护。直到现在尚未考虑过滤器寿命对过滤器寿命的流动行为的影响。所有滤光器必须同时更改,这会导致昂贵的维护和植物关闭。有时,过滤器需要更早地改变它的现实生活。这项工作的主要目的是设计一种百叶窗形状,该百叶窗形状通过每个通道中的过滤器壳体获得一致的气流。通过二维模型模拟通过四种不同形状的百叶窗的过滤器壳体的气流。过滤器尺寸固定在60?×60?厘米。三个过滤器设置为180Ω·厘米的过滤器外壳高度系列。 CFD模型用于本作作品中,以确定最佳过滤器外壳和百叶窗形状,用于减压和均匀的气流分布。结果表明,最佳过滤器壳体角度在最大的百叶窗尺寸下被发现为45°,具有相同的入口和出口通道(H / L / Z?= 1/1/1)。过滤器外壳和百叶窗的设计可以表示最佳气流行为和最佳成本。

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