| 注册
首页|期刊导航|岩土工程学报|高渗压与循环加卸载环境下开挖卸荷岩体力学特性试验研究

高渗压与循环加卸载环境下开挖卸荷岩体力学特性试验研究

陈兴周 白亚妮 陈莉丽 马彬 王文瑞 龚盛

岩土工程学报2024,Vol.46Issue(4):737-745,9.
岩土工程学报2024,Vol.46Issue(4):737-745,9.DOI:10.11779/CJGE20221470

高渗压与循环加卸载环境下开挖卸荷岩体力学特性试验研究

Experimental study on mechanical properties of excavated unloading rock mass under high osmotic pressure and cyclic loading and unloading environments

陈兴周 1白亚妮 1陈莉丽 1马彬 1王文瑞 1龚盛1

作者信息

  • 1. 西安科技大学建筑与土木工程学院,陕西 西安 710054
  • 折叠

摘要

Abstract

Exploring the evolution laws of mechanical properties of deeply excavated unloading rock mass under high osmotic pressure and cyclic loading and unloading environments is conducive to the realease of deformation and failure mechanism under combined loading.By distinguishing the excavation disturbance intensity from the magnitude of osmotic pressure,the triaxial loading and unloading tests are conducted,and unloading rock mass subjected to excavation disturbance under high osmotic pressure environments are conducted considering the combined action of specific pore pressure and cyclic loading.The results show that:(1)The magnitude of unloading directly affects the deformation laws and the failure strength of rock samples and the pore water pressure promotes their tensile and shear failure during the cyclic loading and unloading.(2)The increase of pore pressure intensifies the ductile deformation and strength attenuation of the unloading rock samples with the same magnitude during the cyclic loading and unloading process,and the axial,circumferential and volumetric deformation curves of the unloading rock samples fluctuate at the pore pressure of 2 MPa.(3)With the increase of pore pressure,the circumferential deformation of the rock samples at the unloading magnitude of 30%increases first and then decreases,while that at the unloading magnitude of 60%decreases first and then increases.(4)With the increase of unloading magnitude and pore pressure,the dip angle of the end fracture gradually increases when the rock sample is damaged,and the tensile and shear fracture surface generated along the axial direction of the rock sample becomes more prominent.

关键词

深部岩体/开挖卸荷/高渗压/循环加卸载/力学特性

Key words

deep rock mass/excavation and unloading/high osmatic pressure/cyclic loading and unloading/mechanical property

分类

建筑与水利

引用本文复制引用

陈兴周,白亚妮,陈莉丽,马彬,王文瑞,龚盛..高渗压与循环加卸载环境下开挖卸荷岩体力学特性试验研究[J].岩土工程学报,2024,46(4):737-745,9.

基金项目

国家自然科学基金项目(51979218,U1965107) (51979218,U1965107)

陕西省自然科学基金项目(2018JM5118) (2018JM5118)

岩土工程学报

OA北大核心CSTPCD

1000-4548

访问量0
|
下载量0
段落导航相关论文