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Effect of longwall face advance on spontaneous heating in longwall gob area

机译:长壁采煤面对长壁采空区自发加热的影响

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To reduce fire hazards from spontaneous combustion of coal in longwall gob areas, a series of computational fluid dynamics (CFD) simulations were conducted by the National Institute for Occupational Safety and Health (NIOSH) to model the spontaneous heating of coal in longwall gob areas. The previous modeling results demonstrate that spontaneous heating of coal usually occurred behind the longwall shields and along the face with a bleeder ventilation system. Assuming a stationary longwall face, the spontaneous heating could turn to a spontaneous fire in several days for the most reactive coal under favorable conditions. When the longwall face advances, the spontaneous heating process will be significantly affected. In this study, the effect of longwall face advance on the spontaneous heating in the gob area is investigated using the CFD model developed in previous studies. One longwall panel with a bleeder ventilation system is simulated. The width of the panel is 300 m (984 ft), while the length of the panel is changed between 1,000 to 2,000 m (3,280 to 6,560 ft). The same permeability and porosity profiles are used for gobs with different lengths. The spontaneous heating first develops in the gob when the longwall face is stationary. Then, the face advances at a certain rate. The face advance is simulated as a series of discrete movements, and the effect of the face advance on the maximum temperature developed during the face stoppage is examined. [PUBLICATION ABSTRACT]
机译:为了减少长壁采空区煤自燃引起的火灾危险,美国国家职业安全与健康研究所(NIOSH)进行了一系列计算流体动力学(CFD)模拟,以模拟长壁采空区煤的自燃过程。先前的建模结果表明,煤的自发加热通常发生在长壁护罩的后面,并且沿采煤通风系统沿工作面。假设长壁工作面固定,那么在有利条件下,对于活性最高的煤,自发加热可能会在几天内变成自燃。当长壁面前进时,自热过程将受到显着影响。在这项研究中,使用先前研究中开发的CFD模型研究了长壁工作面推进对采空区自发加热的影响。模拟了带有排风系统的长壁面板。面板的宽度为300 m(984英尺),而面板的长度在1,000至2,000 m(3,280至6,560 ft)之间变化。具有不同长度的料滴使用相同的渗透率和孔隙率曲线。当长壁面静止时,采空区中首先产生自发加热。然后,面部以一定的速度前进。面部前进被模拟为一系列离散运动,并且检查了面部前进对面部停止期间产生的最高温度的影响。 [出版物摘要]

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  • 来源
    《Mining Engineering》 |2010年第3期|p.34-38|共5页
  • 作者

    L Yuan A C Smith;

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    L. YUAN AND A.C. SMITHLiming Yuan, member SME, and Alex C. Smith are lead research engineer and senior research chemist, respectively, with the National Institute for Occupational safety and Health (NIOSH), Pittsburgh, PA. Paper number TP-08-064. Original manuscript submitted December 2008. Revised manuscript accepted for publication May 2009. Discussion of this peer-reviewed and approved paper is invited and must be submit- ted to SME Publications Dept. prior to JUne 30, 2010.;

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