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基于CFD-DEM方法的煤气化渣气流分级提炭模拟研究

李向阳 张乾 李乐 白慧 黄伟

太原理工大学学报2025,Vol.56Issue(1):34-43,10.
太原理工大学学报2025,Vol.56Issue(1):34-43,10.DOI:10.16355/j.tyut.1007-9432.20240023

基于CFD-DEM方法的煤气化渣气流分级提炭模拟研究

Simulation Study of Carbon Extraction from Coal Gasification Fine Slag by Airflow Classification Based on CFD-DEM

李向阳 1张乾 1李乐 2白慧 1黄伟1

作者信息

  • 1. 太原理工大学省部共建煤基能源清洁高效利用国家重点实验室,山西 太原
  • 2. 太原理工大学电气与动力工程学院,山西 太原
  • 折叠

摘要

Abstract

[Purposes]The separation of carbon form coal gasification slag is an important means to realize its reduction,harmlessness,and resource utilization.The airflow classification method has unique advantages because of its ability to efficiently process fine-graded particles without waste water and exhaust gas emmission.[Methods]According to CFD-DEM simulation,the gas-solid flow char-acteristics of horizontal turbine air classifier were investigated,and the matching relationship between the air inlet direction and turbine steering was explored.The flow mechanism of carbon and ash par-ticles was clarified.On this basis,the air inlet direction in the turbine air classifier was optimized,and the effects of inlet air velocity and turbine speed on the efficient carbon extraction for gasification slag in air classifier were predicted.[Findings]The results show that the inlet direction of the turbine air classifier has a significant effect on the flow field distribution and the efficiency of carbon extraction for gasification slag.The tangential air inlet leads to the generation of secondary vortices in the grading zone and elution zone that interfere with each other,affecting the separation efficiency of carbon and ash particles.The optimization of tangential air inlet to vertical upward avoids the mutual interference between the elution zone and the classification zone.The secondary vortex between the turbine and the blades is eliminated.The uniform distribution of the flow field in the classification zone is improved and stabilized.The efficiency of carbon extraction is increased.In the optimized turbine airflow classi-fier,by matching the inlet air velocity with the turbine speed,the carbon content in the carbon-rich product can reach 80.95%,and the carbon recovery rate can reach 59.83%.

关键词

煤气化渣/气流分级机/CFD-DEM/流场特性/颗粒运动特征

Key words

coal gasification slag/turbine air classifier/CFD-DEM/flow field characteristics/par-ticle motion characteristics

分类

化学化工

引用本文复制引用

李向阳,张乾,李乐,白慧,黄伟..基于CFD-DEM方法的煤气化渣气流分级提炭模拟研究[J].太原理工大学学报,2025,56(1):34-43,10.

基金项目

国家重点研发计划项目(2020YFB0606304) (2020YFB0606304)

中国神华煤制油化工有限公司科技创新项目(MZYHG-2021-03) (MZYHG-2021-03)

太原理工大学学报

OA北大核心

1007-9432

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