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The modeling of potential ground water contamination in Eskisehir region

机译:Eskisehir地区潜在地面水污染的建模

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In this study, the mathematical modeling of contaminant movements in the porous medium was evaluated in order to determine the potential ground water pollution in Eskisehir region. Analytical solutions of mathematical modeling were done to show the distributions of contaminant concentrations by graphically. Multi-flow computer programming was used to determine the distribution of contaminant concentrations with respect to time and length. The distributions of contaminant concentrations from the contaminant source were determined with respect to time, length, thickness of aquifer, the velocity of ground water and dispersivity. The distribution length of contaminants such as nitrate, nitrite, ammonium, methyl-alkalinity and phenol were determined using the mathematical model modeling. Contaminant source was also considered as a continuos point source in the mathematical model. The distribution length of concentration of contaminant was determined at any time interval. It was observed that contaminant concentrations increases with increasing the coefficient of dispersivity and decreases with Increasing the thickness of aquifer and velocity of ground water flow. The distribution length of contaminant from the source depend on the geometry and geological situations of porous medium. It was also determined that contaminants reaches from the source to water supply well 1000 days later. From this study, the potential pollution or ground water can be effectively estimated in advance.
机译:在该研究中,评价多孔培养基中的污染物运动的数学建模,以确定Eskisehir地区的潜在地面水污染。进行数学建模的分析解是通过图形显示污染物浓度的分布。多流量计算机编程用于确定相对于时间和长度的污染浓度的分布。相对于时间,长度,含水层,地面水和分散性的时间,长度,厚度确定来自污染源的污染浓度的分布。使用数学模型建模确定硝酸盐,亚硝酸盐,铵,甲基 - 碱度和苯酚等污染物的分布长度。污染物源也被认为是数学模型中的连续点源。在任何时间间隔测定污染物浓度分布长度。观察到污染物浓度随着增加的分散性系数而增加,随着增加含水层的厚度和地下水流速的速度而降低。来自源的污染物的分布长度取决于多孔介质的几何形状和地质情况。还确定污染物从源到1000天后从来源到供水。从本研究开始,可以提前有效地估计潜在的污染或地面水。

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