暖通空调2024,Vol.54Issue(5) :42-47.DOI:10.19991/j.hvac1971.2024.05.05

铝熔炼炉排烟罩捕集性能分析及优化数值模拟

Numerical simulation for capture performance analysis and optimization of exhaust hoods in aluminum smelting furnaces

乔梦丹 杨洋 王怡 杨春晖 李军 陈虎
暖通空调2024,Vol.54Issue(5) :42-47.DOI:10.19991/j.hvac1971.2024.05.05

铝熔炼炉排烟罩捕集性能分析及优化数值模拟

Numerical simulation for capture performance analysis and optimization of exhaust hoods in aluminum smelting furnaces

乔梦丹 1杨洋 2王怡 2杨春晖 3李军 3陈虎1
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作者信息

  • 1. 西安建筑科技大学,西安
  • 2. 西安建筑科技大学,西安;绿色建筑全国重点实验室,西安
  • 3. 中色科技股份有限公司,洛阳
  • 折叠

摘要

铝加工厂房熔炼工艺中高温烟尘散发强度大、浓度高,对建筑室内外环境和人员健康危害大.为提高铝熔炼炉局部排烟罩捕集效率,本文研究了排烟罩捕集效率与量纲一排风量(排烟罩排风量/烟尘散发量)的关系;基于消涡原理及气流卷吸特性,提出了排烟罩捕集性能优化方法.研究表明,当量纲一排风量小于3.2时,增大排风量会显著提升排烟罩的捕集效率,为风量经济区.排烟罩几何特征优化后,在风量经济区内烟尘逃逸率降低了 20%左右,系统排风量降低了 6.1%~44.1%.

Abstract

In the smelting process of aluminum processing plants,the high temperature soot emission intensity and concentration are high,which is harmful to the indoor and outdoor environment and human health.In order to improve the capture efficiency of local exhaust hoods in aluminum smelting furnaces,this paper studies the relationship between the capture efficiency of exhaust hoods and the dimensionless exhaust air volume(the ratio of exhaust hood exhaust air volume to soot emission volume).Based on the principle of vortex elimination and the characteristics of airflow entrainment,an optimization method for the capture performance of exhaust hoods is proposed.The research shows that when the dimensionless exhaust air volume is less than 3.2,increasing the exhaust air volume will significantly improve the capture efficiency of the exhaust hood,which is the air volume economic zone.After optimizing the geometric characteristics of the exhaust hood,the soot escape rate can be reduced by about 20%and the system exhaust air volume can be reduced by 6.1%to 44.1%in the air volume economic zone.

关键词

高温烟尘/局部排烟罩/捕集效率/消涡原理/气流卷吸特性

Key words

high temperature soot/local exhaust hood/capture efficiency/vortex elimination principle/airflow entrainment characteristic

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基金项目

国家自然科学基金面上项目(52078409)

出版年

2024
暖通空调
亚太建设科技信息研究院 中国建筑设计研究院 中国建筑学会暖通空调分会

暖通空调

CSTPCD
影响因子:0.711
ISSN:1002-8501
参考文献量18
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