Zhang Yuning, Chen Yulong
School of Civil and Architectural Engineering, Yangtze Normal University, Chongqing 408100, China.
State Key Laboratory of Hydroscience and Engineering, Tsinghua University, Beijing 100084, China.
Materials (Basel). 2017 Oct 23;10(10):1217. doi: 10.3390/ma10101217.
Suffusion erosion may occur in sandy gravel dam foundations that use suspended cutoff walls. This erosion causes a loss of fine particles, degrades the soil strength and deformation moduli, and adversely impacts the cutoff walls of the dam foundation, as well as the overlying dam body. A comprehensive evaluation of these effects requires models that quantitatively describe the effects of fine particle losses on the stress-strain relationships of sandy gravels. In this work, we propose an experimental scheme for studying these types of models, and then perform triaxial and confined compression tests to determine the effects of particle losses on the stress-strain relationships. Considering the Duncan-Chang E-B model, quantitative expressions describing the relationship between the parameters of the model and the particle losses were derived. The results show that particle losses did not alter the qualitative stress-strain characteristics of the soils; however, the soil strength and deformation moduli were degraded. By establishing the relationship between the parameters of the model and the losses, the same model can then be used to describe the relationship between sandy gravels and erosion levels that vary in both time and space.
采用悬挂式防渗墙的砂砾石坝基可能会发生渗流冲刷。这种冲刷会导致细颗粒流失,降低土壤强度和变形模量,并对坝基防渗墙以及上部坝体产生不利影响。对这些影响进行全面评估需要能够定量描述细颗粒流失对砂砾石应力应变关系影响的模型。在这项工作中,我们提出了一种研究这类模型的试验方案,然后进行三轴试验和侧限压缩试验,以确定颗粒流失对应力应变关系的影响。考虑邓肯-张E-B模型,推导了描述模型参数与颗粒流失之间关系的定量表达式。结果表明,颗粒流失并未改变土体应力应变的定性特征;然而,土体强度和变形模量有所降低。通过建立模型参数与流失量之间的关系,同一模型可用于描述时空变化的砂砾石与冲刷程度之间的关系。