煤炭工程 ›› 2018, Vol. 50 ›› Issue (11): 58-62.doi: 10.11799/ce201811015

• 生产技术 • 上一篇    下一篇

综放工作面配风量对采空区遗煤瓦斯涌出的影响研究

范涛,刘彦青,桑聪,等   

  1. 煤炭科学技术研究院有限公司
  • 收稿日期:2017-08-14 修回日期:2017-10-08 出版日期:2018-11-20 发布日期:2018-12-25
  • 通讯作者: 刘彦青 E-mail:lyqing0906@163.com

Analysis of the effects of air quantity of the fully mechanized caving face on the gas emission of the left mine in gob based on the technique of CFD simulation

  • Received:2017-08-14 Revised:2017-10-08 Online:2018-11-20 Published:2018-12-25

摘要: 为了得到综放工作面配风量与通风方式这两个通风关键因素对采空区遗煤瓦斯涌出的影响规律,以郑煤集团新郑煤电有限责任公司11208综放工作面为研究对象,建立了综放工作面采空区遗煤瓦斯运移CFD稳态计算模型,在验证了计算模型计算结果正确性的基础上,利用该模型对U型、U+I型、偏Y型、并列双U型四种通风方式下工作面配风量对上隅角瓦斯浓度、回风巷瓦斯浓度、风排瓦斯巷瓦斯浓度、总风排瓦斯量的差异性进行了定量化分析,研究结果表明,U+I型、偏Y型与并列双U型通风方式有利于控制上隅角瓦斯浓度,但采空区风排瓦斯巷存在瓦斯超限隐患,研究结果对综放工作面通过配风量控制采空区遗煤瓦斯涌出措施具有重大的参考价值。

关键词: 综放工作面, 配风量, 采空区遗煤, 瓦斯涌出, 上隅角瓦斯浓度, 通风方式

Abstract: In order to solve the problem that under U type ventilation the gas concentration in the upper corner of the fully mechanized caving face was overrunning due to gas emission of the left mine in gob, the CFD bistable computing model of gas emission of the left mine in gob was builded.and By numerical simulation method the air-flowing field and the gas-concentration field in gob under U-tube ventilation system, U+I-tube ventilation system, inclined to Y type ventilation system and Paratactic double U-shape ventilation system were simulated. With different air quantity of coal face, gas-concentration in upper corner, gas-concentration in return airway, gas-concentration in the wind drainage roadway in the gob and total gas quantity of air-flow were analyzed and compared. The results showed that under U+I-tube ventilation system, inclined to Y type ventilation system and Paratactic double U-shape ventilation system, the gas-concentration in upper corner was well controlled, but gas-concentration in the wind drainage roadway in the gob had a high probability of exceeding the limit. The research results had important reference value for controlling gas emission of the left mine in gob by air quantity of the fully mechanized caving face.

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