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Experimental study and optimization on filtration and fluid flow performance of a granular bed filter

机译:粒状床过滤器过滤和流体流性能的实验研究及优化

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An experimental system for a fixed granular bed filter (GBF) used to filter dust particles in industrial flue gas was built. The effects of filtration superficial velocity, bed height, and granules size on filtration and fluid flow performance were investigated. The results demonstrate that the GBF has high filtration efficiency and relatively low pressure drop, e.g. the filtration efficiency can reach 99.45% with a pressure drop of 291 Pa. The increase of filtration superficial velocity leads to the decrease of filtration efficiency but the increase of pressure drop. The filtration superficial velocity lower than 0.6 m/s is recommended to achieve higher filtration efficiency, lower pressure drop and acceptable filtration rate in the studied geometric parameter range (granule size: 3-10 mm, bed height: 30-120 mm). The increase of bed height and the decrease of granules size are beneficial to increase filtration efficiency, but detrimental to reduce the pressure drop. In addition, the effects of granules size on pressure drop are more significant than that on filtration efficiency. Based on the experimental results, the structural optimization was performed for the fixed GBF and an optimized structure with different granules sizes was designed. The validation results indicate that the designed GBF structure has excellent filtration and fluid flow performance compared with the traditional structure with single granules size. Under the investigated filtration superficial velocity region, the average filtration efficiency is enhanced 3.23% and the pressure drop is reduced 49.94%. (C) 2017 Elsevier B.V. All rights reserved.
机译:建立了用于过滤工业烟道气中的粉尘颗粒的固定颗粒床过滤器(GBF)的实验系统。研究了过滤表面速度,床高度和颗粒尺寸对过滤和流体流动性能的影响。结果表明,GBF具有高过滤效率和相对低的压降,例如,相对低的压降。过滤效率可以达到99.45%,压降为291 pa。过滤表面速度的增加导致过滤效率降低,但压降的增加。建议使用低于0.6m / s的过滤表面速度,以在研究的几何参数范围内实现更高的过滤效率,较低的压降和可接受的过滤速率(颗粒尺寸:3-10mm,床高:30-120mm)。床高度的增加和颗粒尺寸的减小有利于增加过滤效率,但有害以减少压降。此外,颗粒大小对压降的影响比过滤效率更大。基于实验结果,设计了针对固定GBF的结构优化,并设计了不同颗粒尺寸的优化结构。验证结果表明,与具有单个颗粒尺寸的传统结构相比,设计的GBF结构具有优异的过滤和流体流动性能。在所研究的过滤表面速度区域下,平均过滤效率增强3.23%,压降减少49.94%。 (c)2017 Elsevier B.v.保留所有权利。

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