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基于岩石CT扫描的冻融作用对花岗岩细观结构及力学强度影响研究

侯圣山 何箫 孟宪森 陈亮 冯振 刘明学 李昂 郭长宝 吉锋

地质力学学报2024,Vol.30Issue(3):462-472,11.
地质力学学报2024,Vol.30Issue(3):462-472,11.DOI:10.12090/j.issn.1006-6616.2022126

基于岩石CT扫描的冻融作用对花岗岩细观结构及力学强度影响研究

Mesostructure and strength characteristics of granite under freeze-thaw cycles based on CT scanning

侯圣山 1何箫 2孟宪森 2陈亮 1冯振 1刘明学 1李昂 1郭长宝 3吉锋4

作者信息

  • 1. 中国地质环境监测院,北京 100081||自然资源部四川雅安地质灾害野外科学观测研究站,四川雅安 625099||自然资源部地质灾害智能监测与风险预警工程技术创新中心,北京 100081
  • 2. 中国地质环境监测院,北京 100081||成都理工大学地质灾害防治与地质环境保护国家重点实验室,四川成都 610059
  • 3. 中国地质科学院地质力学研究所,北京 100081
  • 4. 成都理工大学地质灾害防治与地质环境保护国家重点实验室,四川成都 610059
  • 折叠

摘要

Abstract

[Objective]With the rapid increase in construction projects in the western regions in recent years,the impact of seasonal freeze-thaw cycles in the high-altitude areas of western China has become more pronounced.Conducting research on the microscopic characteristics and strength degradation properties of rocks under freeze-thaw cycles is crucial for guiding engineering construction in these cold,high-altitude regions.[Methods]To study the influence of freeze-thaw cycles on rock structure and mechanical properties,we collected diorite samples from a tunnel in the Kangding area and examined the effects of freeze-thaw cycles on their microstructure and mechanical characteristics.Firstly,thin rock sections were observed under a polarizing microscope to obtain mineral compositions and microstructures.Then,CT scanning technology was used to scan the granite samples after freeze-thaw cycles,and the scanned layers were binarized using threshold segmentation.The scanning images of different layers were binarized using threshold segmentation,and high-resolution 3D data and images of the internal and external structures of the samples were obtained by stacking the binary image layers.Fractal theory was applied to calculate the box-counting dimension of the images and quantitatively assess their complexity.This analysis allowed us to examine the evolution and distribution characteristics of the internal structure of granite under freeze-thaw cycles.[Results]Under a polarizing microscope,the rock exhibits a block-like structure with a patchy,coarse-grained,and unequal-grained granite texture,with locally visible metasomatic worm structures.The main phenocryst minerals are alkaline feldspar.Other minerals range in size from 0.25 to 4.0 mm and primarily include quartz,plagioclase,and alkaline feldspar.Secondary minerals include biotite and epidote,while accessory minerals comprise apatite,zircon,and pyrite.Microscopically,the rock is identified as porphyritic,coarse-grained,and unequal-grained biotite diorite granite.Freeze-thaw cycles were applied to the granite samples in the laboratory to study the strength evolution and explore the relationship between structural evolution and strength.The results indicate that the freeze-thaw cycle effect leads to an overall increase in the internal porosity of the granite's microstructure,though the rock's permeability changes minimally,with an increase of only 0.003×10-3 μm2.The internal pore development is uneven,primarily due to the emergence of new micropores,causing changes in the overall structure of the sample.After freeze-thaw cycles,the complexity of the internal structure of the rock decreases,but the overall integrity remains good,with the fractal dimension staying at a high level.Fractal analysis shows that 20 freeze-thaw cycles do not cause significant changes in the structural complexity of granite.However,the overall mechanical properties of the sample decline,viscosity increases,and long-term strength shows significant attenuation,raising the strain threshold for entering the creep test stage.[Conclusion]When evaluating the safety of rocks with dense primary structures,considering only their structure may lead to deviations from the actual situation.It is essential to combine necessary strength indicators for a comprehensive evaluation.After undergoing freeze-thaw cycles,rocks tend to exhibit more significant deformation while maintaining lower strength.Therefore,appropriate treatments are required for construction in high-altitude areas.[Significance]This study provides a reference for applying fractal theory to the evolution of rock microstructure and the relationship between rock microstructure and strength evolution.It also offers valuable guidance for engineering construction in high-altitude and cold regions.

关键词

冻融循环/阈值分割/CT模型/分形维数/结构演化/长期强度

Key words

freeze-thaw cycle/threshold segmentation/CT model/fractal dimension/structural evolution/long-term strength

分类

天文与地球科学

引用本文复制引用

侯圣山,何箫,孟宪森,陈亮,冯振,刘明学,李昂,郭长宝,吉锋..基于岩石CT扫描的冻融作用对花岗岩细观结构及力学强度影响研究[J].地质力学学报,2024,30(3):462-472,11.

基金项目

国家重点研发计划项目(2021YFC3000505,2021YFB2301304) (2021YFC3000505,2021YFB2301304)

中国地质调查局地质调查项目(DD20221748)This research is financially supported by the National Key Research and Development Program of China(Grant No.2021YFC3000505 and 2021YFB2301304)and the Geological Survey Project of the China Geological Survey(Grant No.DD20221748). (DD20221748)

地质力学学报

OA北大核心CSTPCD

1006-6616

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