龚晓燕, 秦少妮, 张永强, 莫金明, 张欣怡, 夏治新, 薛河. 基于改变风筒出风口参数的综掘工作面风流场优化研究[J]. 煤矿安全, 2017, 48(12): 168-171,175.
    引用本文: 龚晓燕, 秦少妮, 张永强, 莫金明, 张欣怡, 夏治新, 薛河. 基于改变风筒出风口参数的综掘工作面风流场优化研究[J]. 煤矿安全, 2017, 48(12): 168-171,175.
    GONG Xiaoyan, QIN Shaoni, ZHANG Yongqiang, MO Jinming, ZHANG Xinyi, XIA Zhixin, XUE He. Study on Optimization of Air Duct Outlet Parameters of Wind Flow Field in Fully Mechanized Excavation Face of Coal Mine[J]. Safety in Coal Mines, 2017, 48(12): 168-171,175.
    Citation: GONG Xiaoyan, QIN Shaoni, ZHANG Yongqiang, MO Jinming, ZHANG Xinyi, XIA Zhixin, XUE He. Study on Optimization of Air Duct Outlet Parameters of Wind Flow Field in Fully Mechanized Excavation Face of Coal Mine[J]. Safety in Coal Mines, 2017, 48(12): 168-171,175.

    基于改变风筒出风口参数的综掘工作面风流场优化研究

    Study on Optimization of Air Duct Outlet Parameters of Wind Flow Field in Fully Mechanized Excavation Face of Coal Mine

    • 摘要: 目前综掘工作面通风风流不能随时根据实际需求进行变化,导致风流场分布不合理,安全隐患风险急剧上升,从改变风筒出风口方向角度、口径及前后距离角度出发对风流场优化分布进行分析。以柠条塔矿综掘工作面为对象,建立验证了风流场数值模拟方案,模拟分析了原始风流场分布规律,针对风流场存在的风速过大过小及涡流现象,对风筒出风口单参数变化下的风流场优化分布进行模拟计算,确定了参数调节取值范围;在此基础上,分析并确定风流场优化分布的出风口参数调节方案,为综掘工作面通风风流场优化提供了有效途径。

       

      Abstract: At present, the airflow of the fully mechanized excavation face can not be changed according to the actual demand at any time, which leads to the irrational distribution of the wind flow field, and increases the risk of the safety hazard sharply. In this paper, the optimal distribution of the flow field is analyzed from the angle of changing the direction of the outlet of the hairdryer, the angle of the caliber and the distance between the front and the rear. Taking the fully mechanized mining face of Ningtiaota Mine as the object, the numerical simulation scheme of the wind flow field is established to simulate the distribution of the original wind flow field. For the situation that the wind speed is too small and the eddy current is very important for the wind flow, the optimal distribution of the flow field under the parameter change is simulated and the range of parameter adjustment is determined. On the basis of those, the adjustment scheme of the outlet parameters of the distribution of the wind flow field is analyzed and determined, which provides an effective way for the optimization of the ventilation flow field in the fully mechanized excavation face.

       

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