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基于微亮晶生物碎屑灰岩裂纹演化的统一瞬态蠕变本构模型。

Unified transient creep constitutive model based on the crack evolution of micritic bioclastic limestone.

机构信息

State Key Laboratory of Hydraulics and Mountain River Engineering, College of Water Resources and Hydropower, Sichuan University, Chengdu, China.

出版信息

PLoS One. 2022 Oct 27;17(10):e0276100. doi: 10.1371/journal.pone.0276100. eCollection 2022.

Abstract

The surrounding rock at the exit of the No. 1 drainage tunnel of the Artashi Water Conservancy Project is micritic bioclastic limestone with 55% bioclastic material. This rock underwent unpredictable large and time-dependent deformation during excavation. To date, the mechanical behaviour of this kind of rock has rarely been studied. In this study, traditional triaxial compression tests and multilevel creep tests were conducted on micritic bioclastic limestone, and the results clarified the instantaneous and time-dependent mechanical properties of the rock. Considering that the essence of rock failure is crack growth, the crack strain evolution properties were revealed in rock triaxial compression tests and multilevel creep tests. Based on triaxial compression tests, the evolution of axial cracks with increasing deviatoric stress ratio Rd (ratio of deviatoric stress to peak deviatoric stress) was observed, and an axial crack closure element and new crack growth element were proposed. To simulate the creep behaviour of a rock specimen, the relationship of the rock creep crack strain rate with Rd was studied. A creep crack element was created, and the creep crack strain evolution equation was obtained, which closely fit the experimental data. Combining the 4 element types (elastic element, crack closure element, crack growth element, and creep crack element), a unified transient creep constitutive model (Mo's model) was proposed, which represented both the transient and time-dependent mechanical properties of the micritic bioclastic limestone.

摘要

阿塔什水利枢纽 1 号排水洞出口段围岩为微晶生物碎屑灰岩,含 55%生物碎屑。该岩石在开挖过程中发生了不可预测的大变形和时间依赖性变形。迄今为止,对这种岩石的力学行为研究甚少。本研究对微晶生物碎屑灰岩进行了常规三轴压缩试验和多级蠕变试验,结果阐明了岩石的瞬时和时间相关力学特性。考虑到岩石破坏的本质是裂纹扩展,在岩石三轴压缩试验和多级蠕变试验中揭示了裂纹应变演化特性。基于三轴压缩试验,观察了随着偏应力比 Rd(偏应力与峰值偏应力之比)的增加轴向裂纹的演化,并提出了轴向裂纹闭合单元和新的裂纹扩展单元。为了模拟岩石试样的蠕变行为,研究了岩石蠕变裂纹应变率与 Rd 的关系。创建了一个蠕变裂纹单元,并获得了蠕变裂纹应变演化方程,该方程与实验数据吻合较好。结合 4 种单元类型(弹性单元、裂纹闭合单元、裂纹扩展单元和蠕变裂纹单元),提出了一个统一的瞬态蠕变本构模型(Mo 模型),该模型既代表了微晶生物碎屑灰岩的瞬态和时间相关力学特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8ee/9612482/240cf6df7c75/pone.0276100.g001.jpg

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