首页> 外文会议>ISRM Young Scholars Symposium on Rock Mechanics >Experimental research of seepage characteristics caused by coal floor rock full of stress and strain process, operated by No.5 Taiyuan group
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Experimental research of seepage characteristics caused by coal floor rock full of stress and strain process, operated by No.5 Taiyuan group

机译:煤落岩渗流特性的实验研究充满压力和应变过程,由太原集团5号运营

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To explore chenghe main coal seam permeability characteristics of the mine rock bottom.In this paper the No.5 Dongjiahe coal seam floor which was representatively formed by mudstone, gritstone, siltstone and limestone was chosen as study case.By using MTS electro-hydraulic servo system, rock mechanics test is full of stress state-behavior of permeability contrast test.According to the test results of rock samples obtained four complete stress-strain process and penetration with stress and strain curves corresponding changes, combined with the destruction of the permeability of rock samples before-the relationship between stress analysis of its associated features.The results reflect the specimen deformation under conditions of complete stress-strain process permeability of the soft rock and hard rock showed a greater difference, soft rock strain softening stage in a sharp decrease in the permeability of the phenomenon, after the peak of the rock sample poor permeability;rather coarse sandstone, siltstone and limestone of the three samples representing a similar performance at the microscopic pore water through peak after crushing rock fractures or fissures seepage.In a comparative analysis of four core samples penetration-strain and stress-permeability characteristics of the coupling relationship, explores the soft rock and hard rock in the whole stress-strain process exhibit different permeability of internal differences, for soft rock, the stress reaches a peak before the rock strength, permeability with increasing load gradually increases;while hard rock before reaching the peak strength of rock permeability changes are not obvious, but soft and hard rock penetration peak rates tend to lag behind the rock intensity peak.At the same time, for different variation of the permeability of the rock there are differences, arranged in order of the four largest rock permeability rock is mudstone (1.681 × 10-4 Darcy) minimum, followed by siltstone (1.564 × 10-4 Darcy) and limestone (2.306 × 10-4 Darcy), coarse sand (3.342 × 10-4 Darcy) maximum penetration.The results indicate that the permeability of the shale smallest, is the best floor strata impermeable rock.Combining these four rock samples permeability test results analysis, peak flow mostly rocky peak stress in the rock after the strain softening stage where the rock has been demonstrated macro fissures, water inrush from floor strata is confined water through rock stresses, therefore, time to peak stress of rocks formed macroscopic crack before-seepage characteristics and laws, is an important theoretical basis for analysis and judgment floor water inrush conditions.
机译:为了探索矿石岩石底煤层的矿煤层渗透性特征。本文选择了泥岩,砂岩,粉岭和石灰岩代表性地形成的煤层煤层的第五层作为研究案例。使用MTS电液伺服系统,岩石力学测试充满了渗透性对比试验的应力状态行为。根据岩石样品的测试结果获得了四种完全应力 - 应变过程,并渗透应力和应变曲线相应的变化,结合破坏渗透性岩石样品在其相关特征的应力分析之间的关系之间的关系。结果反映了软岩和硬岩完全应力 - 应变过程渗透率下的标本变形显示出更大的差异,软岩体菌株软化阶段急剧下降在现象的渗透性中,在岩石样本的峰值之后渗透性差;相当粗略三个样品的硬石,硅铁晶和石灰石,在裂解岩石骨折或裂隙后通过峰值在微观孔隙水中表示类似的性能。在耦合关系的四个核心样本的比较分析中,探讨了耦合关系的四个核心样本渗透性 - 应变和应力渗透性特征,探索柔软的岩石和硬岩在整个应力 - 应变过程中表现出不同的内部差异的渗透性,对于软岩,应力达到岩石强度前的峰值,随着负荷增加的渗透率逐渐增加;虽然硬岩在达到峰值之前岩石渗透性变化是不明显的,但软硬的岩石渗透峰值速率倾向于落后于岩石强度峰。同时,对于岩石的渗透性的不同变化存在差异,排列为四大岩石的顺序排列渗透性岩石是泥岩(1.681×10-4达西)最小,其次是硅铁岩(1.564×10-4达西)和石灰石(2.306×10-4达西),粗砂(3.342×10-4达西)的最大渗透。结果表明,页岩最小的渗透性,是最好的地层不透水岩。这四个岩石样品渗透性测试结果分析,峰值流量在岩石后大多数岩石峰值应力在岩石已经展示宏观裂缝,从地板地层的水涌入通过岩石胁迫,因此,岩石的峰值应力在岩石裂缝中形成宏观裂纹渗流特征和法律,是分析和判断地板涌入条件的重要理论依据。

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