Evaluation method of rock damage under uniaxial compression based on unit series-parallel electrical conductive model

Ganglie Yuan , Ailan Che , Youzhi Shi
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Abstract

The evaluation of rock damage behaviour is an important requirement for ensuring stability control and safety prediction in rock engineering. However, they have not been able to obtain sufficiently accurate and dynamic results due to the insufficient evaluation method. In this study, by means of fractals and unit series division, a unit series-parallel conductive model of damaged rock is derived, and a new evaluation method of rock damage under uniaxial compression was proposed. Rock was damaged by uniaxial compression, while electrical measurements and X-ray microscopy tests were performed to obtain the damaged rock resistivity, porosity, and fractal dimension variation. By establishing the relationship between defined meso-damage factor and resistivity, rock damage evolution law under axial compression was obtained. The results indicate that the growth trend was agree with the classical statistical damage model, which verified the accuracy of the results obtained by the proposed method. Moreover, as the strain increased, the damage factor determined by resistivity gradually decreased to −0.06 firstly and then increased rapidly to 0.79. Different from previous damage evolution law, brittle failure was observed and the cracks development in each stage was considered, including the closure (negative damage) and expansion (positive damage) of cracks.

基于单元串并联导电模型的单轴压缩岩石损伤评价方法
岩石损伤行为评价是保证岩石工程稳定性控制和安全预测的重要要求。然而,由于评估方法不足,他们未能获得足够准确和动态的结果。本研究采用分形和单位级数划分的方法,导出了损伤岩石的单位级数并行导电模型,并提出了一种新的单轴压缩下岩石损伤评估方法。岩石受到单轴压缩损伤,同时进行了电学测量和X射线显微镜测试,以获得损伤岩石的电阻率、孔隙率和分形维数变化。通过建立确定的细观损伤因子与电阻率的关系,得到了岩石在轴压作用下的损伤演化规律。结果表明,增长趋势与经典的统计损伤模型一致,验证了所提方法所得结果的准确性。此外,随着应变的增加,电阻率决定的损伤因子先逐渐降低到-0.06,然后迅速增加到0.79。与以往的损伤演化规律不同,观察到了脆性破坏,并考虑了每个阶段的裂纹发展,包括裂纹的闭合(负损伤)和扩展(正损伤)。
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CiteScore
2.40
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