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首页> 外文期刊>Computers and Geotechnics >Prediction of climate specific vertical movement of pavements with expansive soils based on long-term 2D numerical simulation of rainwater infiltration
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Prediction of climate specific vertical movement of pavements with expansive soils based on long-term 2D numerical simulation of rainwater infiltration

机译:基于雨水渗透的长期二维数值模拟预测膨胀土路面的气候特定垂直运动

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Long-term 2D simulation of rainwater infiltration into road embankments built on expansive soils is lacking in most highway design strategies. This paper explores the application of Hydrus-2D to establish a finite element model capable of performing long-term simulations of water flow in road embankments subjected to seasonal rainfall. Toward that end, climate specific suction profiles are generated from the simulations using real time climate data, which are used to predict vertical movement at the pavement edge. Sensitivity analyses show that the initial moisture condition has the most significant effect on moisture distribution and suction profile patterns. This induces a maximum decrease in vertical movement of 3.0 cm when a dry initial moisture state is compared with a wet initial moisture state. Higher values of evaporation rate and hydraulic conductivity result in less long-term vertical movement, although the impact is less obvious compared to initial moisture condition. The results also indicate that an extreme rain event can double the vertical displacement of pavements when compared to normal rain events, which proves the importance of using real climate data when expansive soils are involved. A case study presented the advantages of using Hydrus-2D suction profiles to predict vertical movement of pavements.
机译:在大多数高速公路设计策略中,缺乏长期的二维降雨模拟雨水渗入以膨胀土为基础的路堤。本文探讨了Hydrus-2D在建立有限元模型中的应用,该模型能够对季节性降雨对路堤的水流进行长期模拟。为此,使用实时气候数据从模拟中生成特定于气候的吸力曲线,该数据用于预测人行道边缘的垂直运动。敏感性分析表明,初始湿度条件对湿度分布和吸力分布图模式影响最大。当将干燥的初始湿润状态与潮湿的初始湿润状态进行比较时,这将导致垂直运动最大减少3.0 cm。较高的蒸发速率和水力传导率值会导致较少的长期垂直运动,尽管与初始湿度条件相比,影响并不明显。结果还表明,与正常降雨事件相比,极端降雨事件会使人行道的垂直位移增加一倍,这证明了在涉及膨胀土壤时使用真实气候数据的重要性。案例研究显示了使用Hydrus-2D吸力型材来预测人行道垂直运动的优势。

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