Chemical Industry and Engineering Progress ›› 2025, Vol. 44 ›› Issue (8): 4463-4477.DOI: 10.16085/j.issn.1000-6613.2024-2008

• Reactors and process equipment modeling and simulation • Previous Articles    

Effects of anchor frame impeller structure on flow field in stirred tank during gasification slag activation

XU Wenjun1,2(), ZHANG Jianbo2,3(), GUO Yanxia1, LI Huiquan2,3, LI Shaopeng2,3, REN Yiling2,3   

  1. 1.Institute of Resources and Environmental Engineering, Shanxi University, Taiyuan 030006, Shanxi, China
    2.National Engineering Research Center of Green Recycling for Strategic Metal Resources, CAS Key Laboratory of Green Process and Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China
    3.School of Chemical Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
  • Received:2024-12-10 Revised:2025-04-14 Online:2025-09-08 Published:2025-08-25
  • Contact: ZHANG Jianbo

锚框式桨结构参数对煤气化渣活化过程流场特性的影响

续文钧1,2(), 张建波2,3(), 郭彦霞1, 李会泉2,3, 李少鹏2,3, 任艺凌2,3   

  1. 1.山西大学资源与环境工程研究所,山西 太原 030006
    2.中国科学院过程工程研究所,中国科学院绿色过程与工程重点实验室,战略金属资源绿色循环利用国家工程研究中心,北京 100190
    3.中国科学院大学化学工程学院,北京 100049
  • 通讯作者: 张建波
  • 作者简介:续文钧(2000—),男,硕士研究生,研究方向为固废资源化利用。E-mail:wjxu@ipe.ac.cn
  • 基金资助:
    国家重点研发计划青年科学家项目(2022YFC3900100);国家自然科学基金(52174390)

Abstract:

During the hydrochloric acid activation process of gasification slag, the generation of silica gel affects the overall mass transfer, necessitating the clarification of flow field distribution to optimize the reactor. This study constructs a 3000L reactor model and employs computational fluid dynamics to investigate the effects of impeller structure parameters and operating conditions on flow field characteristics. Using gasification slag activation slurry as the mixing medium, the SST k-ω model and Eulerian model are applied to analyze the effects of anchor frame impeller structure parameters and conditions on the specific power input, effective mixing volume fraction, and mixing time during stirring, through the multiple reference frame method and tracer concentration method. The results show that the anchor frame impeller is suitable for mixing gasification slag slurry, with the staggered anchor frame impeller exhibiting the strongest mixing capability. The changes in impeller diameter and rotation speed significantly affect the flow field distribution, with a 1320mm impeller diameter achieving a good balance between mixing efficiency and energy consumption. Increasing the rotation speed significantly enhances volumetric power density and effective mixing volume fraction, with an optimal operating speed of 20r/min, and the optimal installation height of impellers is 216mm. Under optimal design, rapid mixing of slurry is achieved at a low power consumption of 46.96W/m³.

Key words: reactors, non-Newtonian fluids, mixing, computational fluid dynamics (CFD), two-phase flow

摘要:

煤气化渣活化过程中硅酸成胶影响整体传质,需通过了解流场分布来优化反应器。本文构建容积3000L搪玻璃反应釜模型,通过计算流体力学方法研究搅拌桨叶结构参数和工况对流场特性的影响。以煤气化渣活化浆料为搅拌介质,使用剪切应力传输(SST)k-ω模型与Eulerian模型,通过多重参考系法和示踪剂浓度法分析锚框式桨叶结构参数与工况对搅拌过程中单位体积搅拌功率、有效搅拌体积分数和混合时间的影响。结果表明,锚框式桨叶适用于煤气化渣浆液的混合搅拌,其中错位锚框式桨搅拌下流速分布最均匀。桨径和转速的变化显著影响流场分布,1320mm桨径在混合效果与能耗之间达到较好的平衡,而转速的增加显著提高单位体积功率和有效搅拌体积分数,最佳运行转速为20r/min,最佳离底高度为216mm,最优设计下,桨以46.96W/m3的低功耗快速混合浆液。

关键词: 反应器, 非牛顿流体, 混合, 计算流体力学, 两相流

CLC Number: 

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