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Structural Modification and Airflow Optimization of Bag-type Collector Based on Flue-gas Rich-lean Separation

机译:基于烟道气浓度分离的袋式收集器的结构改造和气流优化

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With the computational fluid dynamics software FLUENT, three dimensional gas-solid two-phase flow field was simulated and analyzed for HMC-64 pulse-jet cleaned bag-type collector. The simulation data and the actual operating parameters were compared, and the airflow distribution of bag-type collector was comprehensively learned. On the basis of the original analysis, the reconstruction about flue-gas rich-lean separation combining lateral extension at the entrance of bag filter was put forward. The velocity distribution and the mass flow rate of all filter bags were compared. Results showed that through using rich-lean separation combining lateral extension, the airflow distribution of each filter bag was optimized. The integrated flow non-uniform amplitude and the relative root-mean-square value became lower than those of original model. These conclusions about the structural modification and the airflow optimization provide theoretical foundation for farther research.
机译:利用计算流体动力学软件流畅,模拟三维气体固体两相流场,并分析HMC-64脉冲清洁袋型收集器。比较模拟数据和实际操作参数,袋式收集器的气流分布综合了解。在原始分析的基础上,提出了关于烟道过滤器入口处的横向延伸的烟气浓稀稀的分离的重建。比较所有过滤袋的速度分布和质量流量。结果表明,通过使用横向延伸的浓贫分离,各过滤袋的气流分布得到了优化。集成的流量不均匀幅度和相对根均方值变得低于原始模型。这些结论关于结构改造和气流优化为更远研究提供了理论基础。

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