The groundwater level changing processes modeling in 2D and 3D formulation

Q3 Engineering
O. Sierikova, V. Koloskov, E. Strelnikova
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引用次数: 3

Abstract

The objective of this study was to develop a mathematical model to determine the tendency of the groundwater level changes under the influence of external factors to prevent environmentally hazardous impacts and emergency situations. Mathematical methods (analytical solution of differential filtration equations involved the computer program Maple) - for creation the groundwater level changes model, methods of ecological and economic assessment and comparative analysis - for the identification of groundwater level impact important factors and groundwater level impact on the environment, balance method - for assessing the groundwater level changes. The mathematical model in 2D formulation works from any value of the initial groundwater level. The value of groundwater level changing at constant evapotranspiration has been obtained, which has been visualized by calculations for limited areas of the Kharkiv territory. Three-dimensional modelling of groundwater level changing in contrast to two-dimensional allows to take into account the dependence of evapotranspiration on the presence of artificial coverings on the soil surface, which are located unevenly and have different filtration coefficients, which causes corresponding groundwater level changes of urban areas. The nature of groundwater level changes under the influence of external factors has been determined. The necessity to create three-dimensional mathematical models to describe groundwater level changes and improve forecasts of their changes have been identified. A three-dimensional mathematical model of urban groundwater level changes, such as atmospheric water infiltration, additional groundwater replenishment, transpiration, evaporation, evapotranspiration, and groundwater abstraction has been developed. The boundary conditions of the three-dimensional mathematical model have been formulated.
地下水位变化过程的二维和三维模型
本研究的目的是建立一个数学模型,以确定地下水位在外部因素影响下的变化趋势,以防止环境危害影响和紧急情况。数学方法(涉及计算机程序Maple的微分过滤方程解析解)——用于建立地下水位变化模型;生态经济评价和比较分析方法——用于识别地下水位影响重要因素和地下水位对环境的影响;平衡法——用于评估地下水位变化。二维形式的数学模型适用于任何初始地下水位。已获得了恒定蒸散下的地下水位变化值,并通过计算在哈尔科夫境内的有限地区将其可视化。地下水位变化的三维模型与二维模型相比,可以考虑到蒸散发对土壤表面人工覆盖物的依赖,这些覆盖物分布不均匀,过滤系数不同,从而导致城市地区相应的地下水位变化。确定了外部因素影响下地下水位变化的性质。建立三维数学模型来描述地下水位变化并改进其变化预测的必要性已得到确认。建立了城市地下水位变化的三维数学模型,包括大气水分入渗、地下水补充、蒸腾、蒸发、蒸散和地下水抽取。给出了三维数学模型的边界条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta Periodica Technologica
Acta Periodica Technologica Engineering-Engineering (all)
CiteScore
0.60
自引率
0.00%
发文量
0
审稿时长
8 weeks
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