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Experimental study on the goaf flow field of the ‘‘U+I” type ventilation system for a comprehensive mechanized mining face 被引量:9

Experimental study on the goaf flow field of the ‘‘U+I” type ventilation system for a comprehensive mechanized mining face
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摘要 "U" and "U+I" type ventilation experiments were performed on a three-dimensional fully mechanized caving face simulation experimental platform. The distribution laws of the pressure field and gas field in the mine goal were obtained. Results show that the flow field in the goaf is generally asymmetric; the location of the gas accumulation area changes with ventilation parameters and can be used as an evaluation indicator to study the air leakage extent in the goal. Hence, drainage pipes buried in the goaf to intensively extract gas can be designed in such gas areas, which can give considerations in both improving gas drainage efficiency and reducing air leakage. By comparing the gas extraction effect of model experiments with that of on-site underground practices, the basic laws are commonly consistent according to comparative analysis. Thus the experimental results can be used to guide the application of underground gas prevent!o_n_and.control.. ‘‘U" and ‘‘U+I" type ventilation experiments were performed on a three-dimensional fully mechanized caving face simulation experimental platform. The distribution laws of the pressure field and gas field in the mine goaf were obtained. Results show that the flow field in the goaf is generally asymmetric;the location of the gas accumulation area changes with ventilation parameters and can be used as an evaluation indicator to study the air leakage extent in the goaf. Hence, drainage pipes buried in the goaf to intensively extract gas can be designed in such gas areas, which can give considerations in both improving gas drainage efficiency and reducing air leakage. By comparing the gas extraction effect of model experiments with that of on-site underground practices, the basic laws are commonly consistent according to comparative analysis. Thus the experimental results can be used to guide the application of underground gas prevention and control.
出处 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第6期1003-1010,共8页 矿业科学技术学报(英文版)
基金 supported by the National Natural Science Foundation of China (Nos. 51174198 and 51304203) Supported by State Key Laboratory of Coal Resources and Safe Mining (No. SKLCRSM11X01)
关键词 Goaf flow fieldInner interlocked tail roadwayPressure fieldGas fieldGas center areaVentilation-air-methane efficiency 通风系统 模型试验 采空区 综采工作面 流场 模拟实验平台 气体排放 提取效果
作者简介 Corresponding author. Tel.: +86 13092329182.E-mail: address: 453526930@qq.com (S. Yang).
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