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玲珑金矿深部地应力测量及矿区地应力场分布规律 被引量:88
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作者 蔡美峰 刘卫东 李远 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2010年第2期227-233,共7页
介绍玲珑金矿主矿区深部和浅部两期地应力测量的过程和结果。为提高测量结果的可靠性和准确性,采用完全温度补偿技术和实现完全温度补偿的空心包体应变计等一系列新的技术和方法,对传统的应力解除法进行重大改进。通过实测,获得矿区7个... 介绍玲珑金矿主矿区深部和浅部两期地应力测量的过程和结果。为提高测量结果的可靠性和准确性,采用完全温度补偿技术和实现完全温度补偿的空心包体应变计等一系列新的技术和方法,对传统的应力解除法进行重大改进。通过实测,获得矿区7个水平,18个测点的三维地应力大小和方向。根据实测结果,对玲珑金矿主矿区地应力场的分布规律进行定量的综合分析与研究。研究结果表明:(1)玲珑金矿主矿区地应力场以水平构造应力为主导,最大水平主应力平均为自重应力的2.26倍;(2)最大水平主应力的走向为NW向,基本与区域构造应力场最大主应力的方向相一致;(3)垂直主应力值基本上等于或略大于自重应力值;(4)深部与浅部相比,尽管岩性有较明显变化,但地应力场分布规律并没有显著改变;(5)最大水平主应力、最小水平主应力和垂直主应力值均随深度呈几乎线性增长关系。 展开更多
关键词 岩石力学 玲珑金矿 深部:地应力测量 应力解除法 完全温度补偿 分布规律
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Analytical investigation for stress measurement with the rheological stress recovery method in deep soft rock 被引量:3
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作者 Jiang Jingdong Liu Quansheng Xu Jie 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第6期1003-1009,共7页
Due to the difficulty and weakness of current stress measurement methods in deep soft rock, a new rheological stress recovery method of the determination of the three-dimensional(3D) stress tensor is proposed. It is s... Due to the difficulty and weakness of current stress measurement methods in deep soft rock, a new rheological stress recovery method of the determination of the three-dimensional(3D) stress tensor is proposed. It is supposed that rock stresses will recovery gradually with time and can be measured by embedding transducers into the borehole. In order to explore the applicability and accuracy of this method, analytical solutions are developed for stress measurement with the rheological stress recovery method in a viscoelastic surrounding rock, the rheological properties of which are depicted as both the Burger's model and a 3-parameter solid model. In such conditions, explicit analytical expressions for predicting time-dependent pressures on the transducer are derived. A parametric analysis is then adopted to investigate the influences of the grout solidification time and the mechanical properties of the grout layer. The results indicate that this method is suitable for stress measurement in deep soft rock, the characteristics of which are soft, fractured and subjected to high geo-stress. 展开更多
关键词 In-situ stress measurement Soft rock Rheological Analytical research
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