Teng Guangping, Shi Guoqing, Zhu Jintuo
School of Safety Engineering, China University of Mining and Technology, Xuzhou, 221116, China.
School of Safety and Management Engineering, Hunan Institute of Technology, Hengyang, 421002, China.
Sci Rep. 2022 Nov 25;12(1):20331. doi: 10.1038/s41598-022-24838-7.
In this study, a pressure drop model was developed through numerical simulation and experimentation for optimizing the design of the pleated structure of the filter media to extend the service life of the filter and reduce the ventilation energy consumption. The effect of the Stokes number on the dust deposition on the pleated filter media was revealed through numerical simulation. On this basis, a pressure drop model during dust loading was developed. The model suggests that under the same mass of dust deposition per unit area (W), the greater the pleat ratio (α), the greater the dust cake thickness and the effective filtration velocity in the effective filtration area. In addition, for V-shaped and U-shaped filters, the relative mean deviations between experimental and modeling total pressure drops are 3.68% and 4.82%, respectively. In other words, the proposed model accurately predicts pressure drop during dust loading. Furthermore, under the same α and [Formula: see text], the total pressure drop of the U-shaped filter is lower than that of the V-shaped filter, demonstrating the superior filtration performance of the U-shaped filter.
在本研究中,通过数值模拟和实验开发了一种压降模型,用于优化过滤介质褶皱结构的设计,以延长过滤器的使用寿命并降低通风能耗。通过数值模拟揭示了斯托克斯数对褶皱过滤介质上灰尘沉积的影响。在此基础上,建立了粉尘加载过程中的压降模型。该模型表明,在单位面积粉尘沉积质量(W)相同的情况下,褶皱比(α)越大,滤饼厚度和有效过滤区域内的有效过滤速度就越大。此外,对于V形和U形过滤器,实验和建模总压降之间的相对平均偏差分别为3.68%和4.82%。换句话说,所提出的模型能够准确预测粉尘加载过程中的压降。此外,在相同的α和[公式:见原文]下,U形过滤器的总压降低于V形过滤器,表明U形过滤器具有优越的过滤性能。