WU Jiajun, YOU Yonghua, MAO Hanlin, et al. Numerical study on dynamic sedimentation characteristics of ash particles in baghouse filter devices and its influence on sedimentary layer[J]. Thermal power generation, 2025, 54(5): 148-155.
WU Jiajun, YOU Yonghua, MAO Hanlin, et al. Numerical study on dynamic sedimentation characteristics of ash particles in baghouse filter devices and its influence on sedimentary layer[J]. Thermal power generation, 2025, 54(5): 148-155. DOI: 10.19666/j.rlfd.202410257.
The porous media methodology is used to describe the filter bags and their surface ash layer seepage flow. On this basis
the discrete particle model(DPM)
as implemented in Fluent software
is employed to simulate the dynamics of dust particles movement and deposition in a baghouse filter. The effects of dust particle size on evolving morphology of the cake on the filter bags are investigated
and the influence of additional resistance of the filter cake on subsequent ash particle deposition is explored. The results show that
when the duration of dust removal is sufficiently long
the cake thickness and pressure loss in the baghouse filter increase in a linear fashion over time. For a constant dust mass flow rate
the pressure loss becomes higher with smaller dust particles. The smaller ash particles are transported more effectively by the upward airflow to the top of the vertical filter bag
whereas the larger particles
due to their weight
tend to settle in the middle area. This results in significant differences in the distribution of cake thickness. In contrast to conventional algorithms that neglect cake resistance
the proposed model
which incorporates this resistance through advanced development in commercial software
predicts a more uniform distribution of dust thickness
which is more consistent with the actual situations. This conclusion can provide references for improving the operational efficiency of baghouse filters.