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Numerical simulation of the free surface and water inflow of a slope considering the nonlinear flow properties of gravel layers: a case study

机译:考虑砾石层非线性流动特性的边坡自由表面和水流入的数值模拟:一个案例研究

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摘要

Groundwater is an important factor of slope stability, and 90% of slope failures are related to the influence of groundwater. In the past, free surface calculations and the prediction of water inflow were based on Darcy's law. However, Darcy's law for steady fluid flow is a special case of non-Darcy flow, and many types of non-Darcy flows occur in practical engineering applications. In this paper, based on the experimental results of laboratory water seepage tests, the seepage state of each soil layer in the open-pit slope of the Yanshan Iron Mine, China, were determined, and the seepage parameters were obtained. The seepage behaviour in the silt layer, fine sand layer, silty clay layer and gravelly clay layer followed the traditional Darcy law, while the gravel layers showed clear nonlinear characteristics. The permeability increases exponentially and the non-Darcy coefficient decreases exponentially with an increase in porosity, and the relation among the permeability, the porosity and the non-Darcy coefficient is investigated. A coupled mathematical model is established for two flow fields, on the basis of Darcy flow in the low-permeability layers and Forchheimer flow in the high-permeability layers. In addition, the effect of the seepage in the slope on the transition from Darcy flow to Forchheimer flow was considered. Then, a numerical simulation was conducted by using finite-element software (FELAC 2.2). The results indicate that the free surface calculated by the Darcy–Forchheimer model is in good agreement with the in situ measurements; however, there is an evident deviation of the simulation results from the measured data when the Darcy model is used. Through a parameter sensitivity analysis of the gravel layers, it can be found that the height of the overflow point and the water inflow calculated by the Darcy–Forchheimer model are consistently less than those of the Darcy model, and the discrepancy between these two models increases as the permeability increases. The necessity of adopting the Darcy–Forchheimer model was explained. The Darcy–Forchheimer model would be applicable in slope engineering applications with highly permeable rock.
机译:地下水是边坡稳定的重要因素,其中90%的边坡破坏与地下水的影响有关。过去,自由表面的计算和入水量的预测都是基于达西定律。但是,达西定律流体定律是非达西流动的特例,在实际工程应用中会出现许多类型的非达西流动。本文根据实验室渗水试验结果,确定了燕山铁矿露天矿山各土层的渗流状态,并得出了渗流参数。粉砂层,细砂层,粉质黏土层和砾石黏土层的渗流行为遵循传统的达西定律,而砾石层表现出明显的非线性特征。随着孔隙率的增加,渗透率呈指数增长,非达西系数呈指数下降,并研究了渗透率,孔隙率和非达西系数之间的关系。基于低渗透层的达西流和高渗透层的Forchheimer流,建立了两个流场的耦合数学模型。此外,还考虑了斜坡渗流对从达西流到福希海默流的过渡的影响。然后,使用有限元软件(FELAC ​​2.2)进行了数值模拟。结果表明,由Darcy-Forchheimer模型计算出的自由表面与现场测量结果吻合良好。但是,使用达西模型时,仿真结果与测量数据存在明显偏差。通过对砾石层的参数敏感性分析,可以发现,达西-福希海默模型计算出的溢流点高度和入水量始终小于达西模型,并且这两个模型之间的差异增大了随着渗透率的增加。解释了采用Darcy-Forchheimer模型的必要性。 Darcy–Forchheimer模型将适用于具有高渗透性岩石的边坡工程应用。

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