首页|期刊导航|Journal of Groundwater Science and Engineering|Comparative evaluation of upscaled analytical and numerical models for DNAPL dissolution processes

Comparative evaluation of upscaled analytical and numerical models for DNAPL dissolution processesOA

中文摘要

Mathematical model-based accurate evaluation of the remediation process at organic pollution sites serves as an efficient approach to the management and remediation of contaminant source zones.Numerical and upscaled analytical solution models are effective mathematical methods for reproducing the Dense Nonaqueous Phase Liquid(DNAPL)remediation process.However,in the current design of pollutant removal schemes,effective mass transfer models for characterizing the elution behaviors of contaminants remain lacking.In this study,two mathematical methods integrated with improved mass transfer models were employed to simulate the multi-stage contaminant elution behaviors under two distinct scenarios:A mixed-source region subjected to continuous water flushing and a residual DNAPL source treated with shorter-duration pulse flushing of the ethanol solution.Both the improved numerical model and upscaled analytical solution model demonstrated enhanced accuracy,which was attributed to the incorporation of solubilization mechanisms into mass transfer processes and the adoption of a multi-source region division method.The Mean Absolute Errors(MAE)of the numerical simulation for the two scenarios were 20.68 mg/L and 6.93 mg/L,respectively,whereas those of the upscaled model were 33.29 mg/L and 8.60 mg/L,respectively.Comparing the two improved models,the numerical model exhibited higher accuracy,while the upscaled model was characterized by faster computation speed and fewer input parameters.

Pan-rui Yang;Xiao-min Yuan;Hui-rong Guo;Bao-lan Li;Xing-quan Wang;Min Yuan

School of Ecology and Environmental Science,Qinghai Institute of Technology,Xining 810016,China Qinghai Provincial Key Laboratory of Plateau Climate Change and Corresponding Ecological and Environmental Effects,Xining 810016,ChinaSchool of Ecology and Environmental Science,Qinghai Institute of Technology,Xining 810016,China Qinghai Provincial Key Laboratory of Plateau Climate Change and Corresponding Ecological and Environmental Effects,Xining 810016,ChinaSchool of Environmental Studies,China University of Geosciences,Wuhan 430074,ChinaSchool of Ecology and Environmental Science,Qinghai Institute of Technology,Xining 810016,China Qinghai Provincial Key Laboratory of Plateau Climate Change and Corresponding Ecological and Environmental Effects,Xining 810016,ChinaSchool of Ecology and Environmental Science,Qinghai Institute of Technology,Xining 810016,China Qinghai Provincial Key Laboratory of Plateau Climate Change and Corresponding Ecological and Environmental Effects,Xining 810016,ChinaSchool of Environmental Studies,China University of Geosciences,Wuhan 430074,China

资源环境

Mass transfer rate coefficientNumerical modelAnalytical solution modelMulti-stage dissolution behaviors

《Journal of Groundwater Science and Engineering》 2026 (3)

P.382-398,17

supported by the Qinghai Institute of Technology"Kunlun Talents"Talent Introduction Research Project(2023-QLGKLYCZX-002)the Qinghai Institute of Technology New Teacher Thesis Extension Research and Cultivation Project(2023011wys005)the National Natural Science Foundation of China(42177077).

10.26599/JGSE.2026.9280088

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