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Examining Fate and Transport of Heavy Metal in Landfill Site through Numerical Environmental Multimedia Modeling Approach

机译:通过数值环境多媒体建模方法检查垃圾填埋场中重金件的命运和运输

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摘要

In this study, the environmental multimedia model (EMM) is extended for assessing the heavy metal in a contaminated site. Using numerical analysis, the EMM is advanced as a numerical EMM system (NEMMS) including three computational modules for the source zone, unsaturated zone, and groundwater zone. The NEMMS incorporates a finite-difference method (FDM), finite-element method (FEM), and analytical solutions to analyze the transport of heavy metals in the environment. Additionally, Monte Carlo simulation (MCS) is conducted based on sensitivity analysis to quantify the propagation of parameter uncertainty for in-depth risk assessment. In the case study, the modeling results from both the numerical and analytical methods correspond well to the measured data. The FEM provides better results than FDM under the same conditions for the case study. The most sensitive parameters in the soil and groundwater zones are found to be the retardation factor and hydraulic conductivity. This indicates that the developed NEMMS can provide better spatial and temporal accuracy in assessing the chemical risks to the connected environmental media.
机译:在该研究中,环境多媒体模型(EMM)延长了评估污染部位中的重金属。使用数值分析,EMM作为数值EMM系统(NEMM)先进,包括用于源区,不饱和区和地下水区的三个计算模块。标号包含有限差分法(FDM),有限元方法(FEM)和分析解决方案,以分析环境中重金属的运输。此外,蒙特卡罗模拟(MCS)是基于灵敏度分析进行的,以量化参数不确定度以进行深入风险评估的传播。在实例研究中,来自数值和分析方法的建模结果对应于测量数据。在案例研究的相同条件下,有限元素提供比FDM更好的结果。发现土壤和地下水区中最敏感的参数是延迟因子和液压导电性。这表明开发的标号可以提供更好的空间和时间准确性来评估连接环境介质的化学风险。

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