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作 者:姚孟 于胜超 张可馨 李海龙 Yao Meng;Yu Shengchao;Zhang Kexin;Li Hailong(School of Environmental Science and Engineering,Southern University of Science and Technology,Shenzhen Guangdong 518055,China;Guangdong Provincial Key Laboratory of Soil and Groundwater Pollution Control,Southern University of Science and Technology,Shenzhen Guangdong 518055,China;State Environmental Protection Key Laboratory of Integrated Surface Wate-Groundwater Pollution Control,Southern University of Science and Technology,Shenzhen Guangdong 518055,China;Department of Earth Sciences,The University of Hong Kong,Hong Kong 999077,China)
机构地区:[1]南方科技大学环境科学与工程学院,广东深圳518055 [2]南方科技大学广东省土壤与地下水污染控制重点实验室,广东深圳518055 [3]南方科技大学地表水-地下水污染综合治理国家环境保护重点实验室,广东深圳518055 [4]香港大学地球科学系,中国香港999077
出 处:《地质科技通报》2023年第4期170-182,共13页Bulletin of Geological Science and Technology
基 金:国家自然科学基金项目(41972260,42130703);深圳市科技创新委员会稳定支持项目(20200925174525002)。
摘 要:为定量研究海岸带众多非线性因素对含水层中地下水流-溶质运移过程的影响,MARUN(Marine Unsaturated)这款专门用于海岸带地下水数值模拟的软件被开发完成。从模型原理、算法特点、文献调研、案例分析等方面综述了MARUN的研究和应用进展。该软件适用于海岸带二维垂直剖面的地下水流及溶质运移反应的数值模拟。MARUN实现了变密度、变饱和度渗流与溶质运移的有限元算法,质量集中的隐式差分离散,以及Picard、Newton、Newton-Picard数值解法,涵盖了海潮海浪、蒸发降雨和荷载效应等众多非线性因素,具有专业性强、灵活性好、容错率高等特点,但没有可视化界面。MARUN已在原油污染的海滩生物修复、潮间带浅层含水层海水-地下水循环过程、区域地下水流系统的演化等场景中取得一批富有特色的研究成果。未来,MARUN需要进一步拓展到三维空间,耦合具有随机特征的物理化学过程,以提高对滨海含水层中地下水流与溶质运移过程的模拟仿真水平。[Sgnificance]To quantitatively study the impact of various nonlinear factors in the coastal zone on groundwater flow and solute transport processes,MARUN(Marine Unsaturated)software for simulating groundwater flow in the coastal zone was developed.[Progress]This paper reviews the research and application progress of MARUN from the aspects of model principles,algorithm characteristics,literature review,and case analyses.The software is suitable for numerical simulations of two-dimensional vertical profiles of groundwater flow and solute transport reactions in the coastal zone.MARUN implements a finite element algorithm for variable saturation and density flow and solute transport,mass-consistent implicit difference discretization,and Picard,Newton,and Newton-Picard numerical solution methods,covering many nonlinear factors such as tides,waves,evaporation,rainfall,and load effects.It is characterized by its high professionalism,good flexibility,and high fault tolerance,but it does not have a graphical user interface.MARUN has achieved a number of highlighted research results in scenarios such as bioremediation of crude oil pollution on beaches,seawater-groundwater circulation processes in shallow aquifers in intertidal zones,and the evolution of regional groundwater flow systems.[Conclusion and Prospects]In the future,MARUN needs to be further expanded into three-dimensional space and coupled with physicochemical processes with random characteristics to improve its performance level of simulating groundwater flow and solute transport in coastal aquifers.
分 类 号:X145[环境科学与工程—环境科学]
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