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Countermeasure Method for Stope Instability in Crown Pillar Area of Cut and Fill Underground Mine 被引量:1
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作者 Tri Karian Hideki Shimada +3 位作者 Takashi Sasaoka Sugeng Wahyudi deyu qian Budi Sulistianto 《International Journal of Geosciences》 2016年第3期280-300,共21页
Maintaining stability as well as optimizing recovery of crown pillar, a pillar separating surface area with the uppermost stope in overhand cut and fill underground mining method, is important. Failures in stope may l... Maintaining stability as well as optimizing recovery of crown pillar, a pillar separating surface area with the uppermost stope in overhand cut and fill underground mining method, is important. Failures in stope may lead to crown pillar failures and cause surface subsidence. Increasing crown pillar thickness will increase crown pillar stability yet reduce mining recovery because part of crown pillar is formed by ore body. Preventing stope failure is the key to maintain stability and optimize recovery of crown pillar. Therefore, it is important to study countermeasure method for stope failure especially in crown pillar area. An attempt has been made to investigate the effectiveness of various countermeasures for stope failure in crown pillar area by means of parametric study. The result shows active type support system is effective for supporting stope in high vertical stress condition while the passive one needs to be installed if the stope is opened in high horizontal stress condition. In general, more supporting capacity from both type support systems is needed if the stope is opened in more severe geological condition. Another countermeasures, sill pillar and surface pile, are introduced for stope instability in crown pillar and non-crown pillar area. Sill pillar is an abandoned slice of unstable stope based on stability analysis. Sill pillar is very effective to stabilize stope both in crown pillar and non-crown pillar area, especially for stope in high horizontal stress condition. Sill pillar application in model with stress ratio 2 can optimize 20 meter thickness of crown pillar into 5 meter. Another proposed countermeasure is surface pile. Surface pile can be installed from the surface to improve stability of crown pillar and stope. The most effective use of surface pile is found in simulation of model with stress ratio 0.75 where surface pile can optimize 15 meter thickness of crown pillar into 5 meter. 展开更多
关键词 Crown Pillar Stope Stability Active and Passive Type Support System Sill Pillar Surface Pile
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粉砂地层长距离大断面矩形顶管减阻技术研究
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作者 钱德雨 李泽祥 +4 位作者 金鑫 邓金平 焦河喜 陈雪华 杨兴国 《非开挖技术》 2021年第2期54-62,共9页
依托苏州市城北路大断面矩形顶管工程,通过对管-浆-土摩擦机理和顶推力影响因素进行研究,分析了管-浆-土相互组合作用下的5种模型,预测了5种模型下的顶推力,与实际施工中顶推力随顶进里程拟合结果进行了对比验证。结果表明:五种模型中,... 依托苏州市城北路大断面矩形顶管工程,通过对管-浆-土摩擦机理和顶推力影响因素进行研究,分析了管-浆-土相互组合作用下的5种模型,预测了5种模型下的顶推力,与实际施工中顶推力随顶进里程拟合结果进行了对比验证。结果表明:五种模型中,具有拱效应的情况下顶推力大小明显小于无拱效应情况;管土全接触模型顶推力大于任何其他计算模型,管浆全接触模型顶推力是五种预测模型中最小的。因此在管节周围注入浆液,可明显降低摩阻力。对于穿越粉砂地层大断面矩形顶管可采用“浓泥”进行注浆。中继间的使用对长距离矩形顶管顶进可分段减小主顶压力,避免施工过程中顶推力的急剧上升。 展开更多
关键词 粉砂地层 矩形顶管 顶推力 减阻技术 中继间
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