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Failure mechanism of pump chambers and their optimized design in deep mining at Qishan Coal Mine 被引量:1

Failure mechanism of pump chambers and their optimized design in deep mining at Qishan Coal Mine
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摘要 Pump chambers, normally used as dominant structures in mining engineering to insure the safety and production of un-derground coal mines, become generally deformed under conditions of deep mining. Given the geology and engineering condition of Qishan Coal Mine in Xuzhou, the failure characteristics of pump chambers at the –1000 m level show that the main cause can be attributed to the spatial effect induced by intersectional chambers, where one pump is constructed per well. We developed an opti-mized design of the pump room, in which the pump wells in the traditional design are integrated into one compounding well. We suggest that the new design can limit the spatial effect of intersectional chambers during construction given our relevant numerical simulation. The new design is able to simplify the structure of the pump chamber and reduce the amount of excavation required. Based on a bolt-mesh-anchor with a rigid gap coupling supporting technology, the stability of pump chamber can be improved greatly. Pump chambers, normally used as dominant structures in mining engineering to insure the safety and production of un- derground coal mines, become generally deformed under conditions of deep mining. Given the geology and engineering condition of Qishan Coal Mine in Xuzhou, the failure characteristics of pump chambers at the -1000 m level show that the main cause can be attributed to the spatial effect induced by intersectional chambers, where one pump is constructed per well. We developed an opti- mized design of the pump room, in which the pump wells in the traditional design are integrated into one compounding well. We suggest that the new design can limit the spatial effect of intersectional chambers during construction given our relevant numerical simulation. The new design is able to simplify the structure of the pump chamber and reduce the amount of excavation required. Based on a bolt-mesh-anchor with a rigid gap coupling supporting technology, the stability of pump chamber can be improved greatly.
出处 《Mining Science and Technology》 EI CAS 2010年第6期825-830,共6页 矿业科学技术(英文版)
基金 supported by the Major Project of the National Basic Research Program of China (No2006CB202200) the Program for New Century Excellent Talents in Uni-versity (NoNCET07-0800) the Special Fund for Basic Research and Operating Expenses of the China University of Mining & Technology, Beijing and the Academician workstation in enterprise of Jiangsu Province (No.BM2009563)
关键词 设计优化 深部开采 煤矿生产 泵室 失效机理 采矿工程 空间效应 开采条件 deep mining pump chambers failure mechanism numerical simulation optimized design
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