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首页> 外文期刊>Bulletin of engineering geology and the environment >Experimental and numerical analyses on the effect of stiffness on bedded sandstone strain burst with varying dip angle
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Experimental and numerical analyses on the effect of stiffness on bedded sandstone strain burst with varying dip angle

机译:刚度对倾角变化的层状砂岩应变破裂影响的实验与数值分析

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摘要

Strain burst violence is related to the stiffness ratio (SR) between environmental and bursting rock masses. Strain burst tests on dolomite specimens with different system stiffnesses and bedded sandstone with four different dip angles as well as numerical analyses of strain burst with different structures are carried out to study the effect of stiffness on strain burst. Results indicate that strain burst intensity is larger in a more flexible system environment, and lower SR corresponds to a larger probability of strain burst. Additionally, with increasing SR, the failure mode becomes more stable, and the influence of the structures on failure mode vanishes gradually. For the lowest SR, the strain energy densities (SEDs) from the surrounding rock are lower for steep structures, while flatter structures correspond to higher SED. Moreover, for vertical and horizontal structures, variation in SED with SR is more sensitive; however, for steep and medium discontinuities, the sensitivity is lower.
机译:应变破裂暴力与环境和破裂岩体之间的刚度比(SR)有关。对具有不同系统刚度的白云岩试样和具有四个倾角的层状砂岩进行了应变爆破试验,并对不同结构的应变爆破进行了数值分析,以研究刚度对应变爆破的影响。结果表明,在更灵活的系统环境中,应变破裂强度更大,而较低的SR则对应于较大的破裂可能性。另外,随着SR的增加,失效模式变得更加稳定,并且结构对失效模式的影响逐渐消失。对于最低的SR,陡峭结构的围岩应变能密度(SED)较低,而平坦的结构则对应较高的SED。此外,对于垂直和水平结构,带有SR的SED的变化更加敏感。但是,对于陡峭和中等的不连续性,灵敏度较低。

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