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FEM-based Numerical Simulation of Water Flow Through a Road Shoulder Structure

机译:基于有限元法的路肩结构水流数值模拟

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Water infiltration and its effects on road structures is a topic of great interest in civil engineering. Water is one of the primary factors which affects the mechanical function of roads. Road structures are more often found in unsaturated conditions as opposed to saturated ones. Under unsaturated conditions water flow is primarily by capillarity, while under saturation gravity is the primary force causing water movement. Moreover, under unsaturated conditions the equations describing water flow into soils are highly nonlinear, showing a higher difficulty in its numerical solution. At present there is a limited volume of literature on the hydraulic properties and numerical simulation of water flow in road structures under unsaturated conditions. This paper presents experimental data and nonlinear numerical simulations using the finite element method (FEM) to analyze the water infiltration through a road should structure in unsaturated conditions. Results show that the shoulder section evaluated in this study does not represent a zone of high water infiltration due to the low infiltration capacity of the materials evaluated, and that hydraulic properties measured in the laboratory can be successfully used in numerical codes for assessing water flow through road structures in future analysis. This work indicates that continuous rainfall events, even of low intensity, can cause more infiltration than a single rainfall event of high intensity.
机译:在土木工程中,水的渗透及其对道路结构的影响是一个非常重要的话题。水是影响道路机械功能的主要因素之一。与饱和道路相反,道路结构更常见于非饱和状态。在非饱和条件下,水的流动主要是通过毛细作用,而在饱和重力下,流动是引起水运动的主要力。此外,在非饱和条件下,描述渗入土壤的水的方程是高度非线性的,在数值解中显示出更高的难度。目前,关于非饱和条件下道路结构水力特性和水流数值模拟的文献很少。本文介绍了使用有限元方法(FEM)的实验数据和非线性数值模拟,以分析非饱和条件下道路结构中的水渗透情况。结果表明,由于被评估材料的渗透能力低,本研究中评估的肩部区域不代表高水渗透区,并且在实验室中测得的水力学性能可以成功地用于数字代码中,以评估通过的水流量。未来的道路结构分析。这项工作表明,即使是低强度的连续降雨事件也比单个高强度的降雨事件会导致更多的入渗。

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