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Probabilistic Modeling of One-Dimensional Water Movement and Leaching from Highway Embankments Containing Secondary Materials

机译:二次材料高速公路堤防一维水运动和浸出的概率模型

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摘要

Predictive methods for contaminant release from virgin and secondary road construction materials are important for evaluating potential long-term soil and groundwater contamination from highways. The objective of this research was to describe the field hydrology in a highway embankment and to investigate leaching under unsaturated conditions by use of a contaminant fate and transport model. The HYDRUS2D code was used to solve the Richards equation and the advection–dispersion equation with retardation. Water flow in a Minnesota highway embankment was successfully modeled in one dimension for several rain events after Bayesian calibration of the hydraulic parameters against water content data at a point 0.32 m from the surface of the embankment. The hypothetical leaching of Cadmium from coal fly ash was probabilistically simulated in a scenario where the top 0.50 m of the embankment was replaced by coal fly ash. Simulation results were compared to the percolation equation method where the solubility is multiplied by the liquid-to-solid ratio to estimate total release. If a low solubility value is used for Cadmium, the release estimates obtained using the percolation/equilibrium model are close to those predicted from HYDRUS2D simulations (10–4–10–2 mg Cd/kg ash). If high solubility is used, the percolation equation over predicts the actual release (0.1–1.0 mg Cd/kg ash). At the 90th percentile of uncertainty, the 10-year liquid-to-solid ratio for the coal fly ash embankment was 9.48 L/kg, and the fraction of precipitation that infiltrated the coal fly ash embankment was 92%. Probabilistic modeling with HYDRUS2D appears to be a promising realistic approach to predicting field hydrology and subsequent leaching in embankments.
机译:维尔京和二次道路建设材料的污染物释放的预测方法对于评估高速公路的潜在长期土壤和地下水污染是重要的。该研究的目的是通过使用污染物命运和运输模型来描述公路路堤中的野外水文,并在不饱和条件下探讨浸出。 Hydrus2D代码用于解决Richards方程和具有延迟的平流分散方程。明尼苏达高速公路路堤中的水流在距离堤防表面0.32米的液压参数抵抗水力含量数据后的几个雨事件中成功建模。从煤粉煤灰的假设浸出在一个场景中概率地模拟了煤粉粉煤灰所取代的1.50米。将仿真结果与渗透率乘以液 - 实心比例的渗透等式方法进行了比较以估计总释放。如果将低溶解度值用于镉,则使用渗透/平衡模型获得的释放估计接近来自氢气2D模拟(10-4-10-2mg Cd / kg灰分)预测的那些。如果使用高溶解度,则渗透方程通过预测实际释放(0.1-1.0mg / kg灰分)。在不确定性的第90百分点,煤粉煤灰路堤的10年液体与效率为9.48升/千克,渗透煤粉煤灰路堤的降水分数为92%。 Hydrus2D的概率建模似乎是预测野外水文和随后在堤防中浸出的有希望的现实方法。

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