|本期目录/Table of Contents|

[1]何宗礼.U型通风采空区注氮参数优选[J].中国安全生产科学技术,2013,9(7):32-37.[doi:10.11731/j.issn.1673-193x.2013.07.005]
 HE Zong li.Optimization of nitrogen inject parameter for Ushaped ventilation goaf[J].Journal of Safety Science and Technology,2013,9(7):32-37.[doi:10.11731/j.issn.1673-193x.2013.07.005]
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U型通风采空区注氮参数优选

《中国安全生产科学技术》[ISSN:1673-193X/CN:11-5335/TB]

卷:
9
期数:
2013年7期
页码:
32-37
栏目:
学术论著
出版日期:
2013-07-31

文章信息/Info

Title:
Optimization of nitrogen inject parameter for Ushaped ventilation goaf
作者:
何宗礼
(平煤集团十一矿,河南平顶山467000)
Author(s):
HE Zongli
(Pingdingshan coal industry group No.11 coal mine, Pingdingshan Henan 467047, China)
关键词:
自然发火注氮数值模拟
Keywords:
spontaneous combustionnitrogen injectionnumerical simulation
分类号:
X962
DOI:
10.11731/j.issn.1673-193x.2013.07.005
文献标志码:
A
摘要:
现场实测了某矿工作面采空区的氧气浓度分布,并利用反演的方法确定了更符合现场实际的基础参数,模拟得到的氧气浓度分布与实测数据基本吻合,以确定的基础参数为条件,利用FLUENT软件对U型通风方式下采空区注氮防灭火技术参数进行了研究。研究结果表明:注氮量相同的条件下,注氮口位置不同时的采空区氧气浓度分布规律也不尽相同,其所达到的防灭火效果也不一样,对比分析自燃“三带”及考虑相应的安全回采速度,确定了最佳注氮口位置为进风侧距工作面10m处;注氮口位置相同时,随着注氮量的增加,采空区自燃带不断回缩前移,自燃带宽度越来越小,通过比较模拟结果及参照相关判定条件,确定了注氮口为10m时的最佳注氮量180m3/h。
Abstract:
The oxygen concentration distribution in working face was measured, and the inversion method was applied to determine the actual parameters. The oxygen concentration distribution by simulation coincided basically with the experimental data. Taking the determined basic parameters for condition, the nitrogen inject parameter of Utype ventilation goaf was studied with the application of FLUENT software.The research results showed that the oxygen concentration distribution was different with different nitrogen injection port location under the same nitrogen injection JP2quantity, and the fire prevention effect was different also. By comparision and analysis of spontaneous combustion “three zones” and considering the corresponding safety mining speed, the optimum loction was determine to be 10 m from the working face in the inlet side. With the same inject location,spontaneous combustion “three zones” retracted forward continuously when nitrogen injection quantity increased.At last ,the optimum nitrogen injection volume was 180m3/h by comparing the simulation results and referring to related determination conditions.

参考文献/References:

[1]陈全,王省身.注氮状态下综放采空区气体分布规律[J].煤矿安全,1994,8(8):2224 CHEN Quan,WANG Xingshen.Fullmechanized caving goaf gas distribution regularity of nitrogen injection condition[J].Safety in Coal Mines,1994,8(8):2224
[2]唐明云.基于温度场法的采空区火源定位技术研究[D].安徽理工大学,2005 TANG Mingyun.Fire positioning technology research based on the temperature field[D].Anhui University of Science & Technology,2005
[3]郝宇,刘杰,王长元,等.综放工作面超厚煤层注氮防灭火技术应用[J].煤矿安全,2008,(7):4144 HAO Yu,LIU Jie,WANG Changyuan,et al.Application of nitrogen injection in super thick coal seam of fullmechanized caving mining face[J]. Safety in Coal Mines,2008,(7):4144
[4]鲍庆国,文虎,王秀林,徐精彩.煤自燃理论及防治技术[M].北京:煤炭工业出版社,1998
[5]张东坡.易自燃特厚煤层综放面采空区注氮防灭火技术研究与应用[D].太原理工大学,2010 ZHANG Dongpo.Study and application on the technique of nitrogen injection against fire in spontaneous combustion thick seam gob[D].Taiyuan University of Technology,2010
[6]李宗翔,李海洋,贾进章.Y形通风采空区注氮防灭火的数值模拟[J].煤炭学报,2005,30(5):593597 LI Zongxiang,LI Haiyang,JIA Jinzhang.Numerical simulation of preventing spontaneous combustion by nitrogen injection in goaf of Ytype ventilation face[J].Journal of China Society,2005,30(5):593597
[7]张国枢,戴广龙.煤炭自燃理论与防治实践[M].北京:煤炭工业出版社,2002
[8]陈全,王省身.综放采场自然发火规律及注氮防灭火技术研究[J].煤炭学报,1996,12(6):618628 CHEN Quan,WANG Xingshen.Rules of spontaneous ignition and injection of nitrogen for fire control in sublevel caving workings[J]. Journal of China Society,1996,12(6):618628
[9]徐会军,刘江,徐金海.浅埋薄基岩厚煤层综入工作面采空区漏风数值模拟[J].煤炭学报,2011,36(3):435441 XU Huijun, LIU Jiang,XU Jinhai.Numerical simulation research on gob air leakage of shallowburied thin bedrock thick coal seam with fullymechanized top coal caving technology[J]. Journal of China Society,2011,36(3):435441
[10]煤矿用氮气防灭火技术规范. 发布单位:煤炭工业部,2008

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备注/Memo

备注/Memo:
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更新日期/Last Update: 2013-07-31