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Comprehensive evaluation of high-steep slope stability and optimal high-steep slope design by 3D physical modeling 被引量:3
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作者 Xing-ping Lai Peng-fei Shan +2 位作者 Mei-feng Cai Fen-hua Ren Wen-hui Tan 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2015年第1期1-11,共11页
High-steep slope stability and its optimal excavation design in Shuichang open pit iron mine were analyzed based on a large 3D physical simulation technique. An optimal excavation scheme with a relatively steeper slop... High-steep slope stability and its optimal excavation design in Shuichang open pit iron mine were analyzed based on a large 3D physical simulation technique. An optimal excavation scheme with a relatively steeper slope angle was successfully implemented at the northwest wall between Nos. 4 and 5 exploration lines of Shuichang Iron Mine, taking into account the 3D scale effect. The phys-ico-mechanical properties of rock materials were obtained by laboratory tests conducted on sample cores from exploration drilling directly from the iron mine. A porous rock-like composite material was formed for the model, and the mechanical parameters of the material were assessed experimentally;specifically, the effect of water on the sample was quantitatively determined. We adopted an experimental setup using stiff modular applied static loading to carry out a visual excavation of the slope at a random depth. The setup was equipped with acous-tic emission (AE) sensors, and the experiments were monitored by crack optical acquirement, ground penetrating radar, and close-field pho-togrammetry to investigate the mechanisms of rock-mass destabilization in the high-steep slope. For the complex study area, the model re-sults indicated a clear correlation between the model's destabilization resulting from slope excavation and the collected monitoring informa-tion. During the model simulation, the overall angle of the slope increased by 1-6 degrees in different sections. Dramatically, the modeled excavation scheme saved over 80 million tons of rock from extraction, generating enormous economic and ecological benefits. 展开更多
关键词 slope stability analysis EXCAVATION DESIGN three-dimensional models physical simulation
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多井缝洞单元水驱见水模式宏观三维物理模拟 被引量:28
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作者 侯吉瑞 李海波 +4 位作者 姜瑜 罗旻 郑泽宇 张丽 苑登御 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2014年第6期717-722,共6页
根据相似理论,设计并制作了多井缝洞单元宏观三维物理模型,研究缝洞型油藏衰竭式底水驱和注水补充能量开采时水驱特征及油井见水模式。结果表明,底水驱时,受底水衰竭和油井见水的影响,初期呈产能高、递减快的特征;注水补充能量后,产能... 根据相似理论,设计并制作了多井缝洞单元宏观三维物理模型,研究缝洞型油藏衰竭式底水驱和注水补充能量开采时水驱特征及油井见水模式。结果表明,底水驱时,受底水衰竭和油井见水的影响,初期呈产能高、递减快的特征;注水补充能量后,产能在短期内回升,之后缓慢下降;底水驱阶段,在底水直进井处易发生底水锥进,呈点状见水,见水时间主要由油井与底水的连通程度决定;注水能起到压锥的作用,抑制底水侵入,使底水驱阶段的点状见水转变为平面线状见水,注水阶段见水时间主要受井深影响。多井缝洞单元水驱油井含水率变化类型可以分为缓慢上升型、阶梯式上升型和暴性水淹型,其主要受油井钻遇储集体类型及配位数影响:油井钻遇溶洞时,随配位数升高,含水率上升速度减慢;油井钻遇裂缝时,随配位数升高,含水率呈阶梯式变化。 展开更多
关键词 缝洞型油藏 宏观三维物理模型 相似理论 底水锥进 注水压锥 含水率变化规律
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