Creep mechanical behavior and damage characteristics of laminated slate under thermal-mechanical coupling

Haopeng Jiang, Annan Jiang
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Abstract

To study the long-term stability of geothermal tunnels within a laminated rock mass, creep tests were conducted on slate with different bedding angles under different temperatures. In this study, we investigated the creep rate and macroscopic failure characteristics of slate with various bedding angles (0–90°). The coupled damage was considered, and combining with the unsteady fractional order theory, a constitutive model that can describe nonlinear behavior of laminated slate under thermal loading was established. The results show that gradual increases in temperature from 20 to 150 °C and loading from 10 to 115 MPa lead to increased rock damage, which leads to accelerated creep and eventual failure of the rock. The long-term strengths of slate with a bedding angle of 0 °C at temperatures of 20, 50, 80, 110, and 150 °C were found to be 126.21, 118.25, 106.18, 94.58, and 85.14 MPa, respectively, and its mechanical properties exhibited anisotropy. The proposed creep model effectively captures the three-stage creep characteristics of high-temperature layered rocks. The results of this study provide theoretical guidance for the long-term stability assessment of geothermal drilling in surrounding rock.
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热-力耦合作用下层状板岩的蠕变力学行为及损伤特征
为了研究地热隧道在层状岩体中的长期稳定性,对不同层理角度的板岩在不同温度下进行了蠕变试验。研究了不同层理角度(0 ~ 90°)板岩的蠕变速率及宏观破坏特征。在考虑耦合损伤的基础上,结合非定常分数阶理论,建立了能描述层状板岩在热载荷作用下非线性行为的本构模型。结果表明:温度从20℃逐渐升高到150℃,加载从10 MPa逐渐升高到115 MPa,岩石损伤程度增加,导致岩石蠕变加速,最终破坏;在20、50、80、110和150℃温度下,0℃层理角板岩的长期强度分别为126.21、118.25、106.18、94.58和85.14 MPa,其力学性能表现出各向异性。所建立的蠕变模型有效地反映了高温层状岩石的三阶段蠕变特征。研究结果为地热钻井围岩长期稳定性评价提供了理论指导。
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