开挖岩坡动态卸荷分区及其支护设计优化

Dynamic unloading zoning of excavated rock slopes and optimization of support design

  • 摘要: 岩质边坡开挖产生大范围卸荷区,其力学性能直接影响边坡的安全与稳定。基于此,开展砂岩室内卸荷试验,分析卸荷过程中岩样的损伤规律;以卸荷比为分区判据,在开挖过程中对各单元的损伤程度进行准确判别并相应弱化,将其嵌入边坡开挖数值模拟分析中,实现动态卸荷分区;采用提出的动态卸荷分区方法,研究工程岩坡开挖卸荷后的变形与支护设计优化。结果表明:(1)随着卸荷比增大,变形模量具有阶段性劣化规律,当卸荷比小于总卸荷比的50%时,变形模量降低不明显,达到50%~90%时,变形模量损失率均值为6.8%~16.9%,超过90%后,变形模量呈突降趋势,损失率均值为16.9%~42.5%,且随着围压增大,卸荷破坏时变形模量降低程度更大;(2)相较于压缩试验,卸荷状态下岩样的黏聚力降低32.9%,内摩擦角增大17.5%;(3)应用卸荷分区后,开挖岩坡的变形与塑性区面积显著增大;(4)通过分区方法判别损伤区与未扰动区,可为支护深度优化提供依据。研究成果可为边坡开挖卸荷分析和支护优化设计提供参考。

     

    Abstract: The excavation of rock slopes generates a wide unloading zone, whose mechanical properties directly influence the safety and stability of the slope. This study conducts laboratory unloading tests on sandstone to analyze the damage patterns of rock samples during unloading. Using the unloading ratio as a zoning criterion, the damage degree of each unit during excavation is accurately assessed and weakened accordingly, which is then incorporated into numerical simulations of slope excavation to achieve dynamic unloading zoning. The proposed dynamic zoning method is used to study deformation and support design optimization of engineering rock slopes after excavation unloading. The results show that: (1) As the unloading ratio increases, the deformation modulus exhibits a stage-wise deterioration trend. When the unloading ratio is less than 50% of the total, the deformation modulus reduction is negligible; between 50% and 90%, the average modulus loss rate ranges from 6.8% to 16.9%; beyond 90%, the modulus sharply decreases, with an average loss rate of 16.9% to 42.5%, and the extent of modulus reduction during unloading failure increases with confining pressure. (2) Compared to compression tests, the cohesion of rock samples under unloading decreases by 32.9%, while the internal friction angle increases by 17.5%. (3) The application of unloading zoning results in significant increases in deformation and the plastic zone area of excavated rock slopes. (4) The zoning method for distinguishing damaged and undisturbed zones provides a basis for optimizing support depth. These findings offer valuable references for slope excavation unloading analysis and support design optimization.

     

/

返回文章
返回