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Numerical Simulation and Application of Gas Flow Distribution of ESP Transformed to Baghouse in Cement Kiln Head

机译:尤其气转换为水泥窑头袋屋的气流分布的数值模拟与应用

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By using Computational Fluid Dynamics (CFD) method, numerical simulation of gas flow distribution of ESP transform to baghouse in cement kiln head of 6000 t/d production. Through numerically simulation, air volume of every filter bag cell and head-on gas flow velocity distribution of filter bag were displayed. By adjusting the configuration parameter of the gas flow distribution device during the numerical simulation, it gives the result that the manner of installing gas flow distribution device, when the windage of the air volume of every filter bag cell is not more than 5% and the press drop of the dust collector with clean filter bag is 300 Pa. The calculated results showed good agreement with the measured results in the field. The simulation results were carried out by transformation. The dust emission concentration of precipitator is 26.6 mg/m~3, and the dust running resistance is less than 1000Pa, can achieve the performance assessment requirements.
机译:通过使用计算流体动力学(CFD)方法,eSP转换为6000T / D生产的水泥窑头袋式变换的数​​值模拟。通过数值模拟,显示每个过滤袋细胞的空气量和过滤袋的头部气流速度分布。通过在数值模拟期间调整气流分配装置的配置参数,它给出了安装气流分配装置的方式,当每个过滤袋单元的空气量的风量不超过5%时用清洁过滤器袋按压集尘器的滴,是300 pa。计算结果表明,与该领域的测量结果达成了良好的一致性。仿真结果是通过转化进行的。除尘器的除尘浓度为26.6mg / m〜3,灰尘运行阻力小于1000pa,可以达到性能评估要求。

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