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Mathematical simulation of water and salt transfer in geosystems of solonetzic soils in the Northern Caspian region

机译:里海北部地区松软质土壤体系中水盐传递的数学模拟

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The Dzhanybek two-dimensional radial-axial mathematical model was developed for water and salt transfer in geosystems of solonetzic complexes of the Northern Caspian region; the model is capable of considering the geochemical links and revealing the features of migration processes between the conjugated elements of the microcatena. The simulation results suggested that the stabilization of salinization-desalinization processes occurs under stable weather conditions within approximately 100 years. When the weather conditions changed (the total moisture pool of the area increased from 1978), the simulation results indicated a tendency toward salinization of dark-colored soils in microdepressions and removal of salts in the upper 1-m thick soil layer on microhighs and microslopes. Predictions for 2040 showed that a deep accumulation of salts in microdepressions and desalinization of soils of microhighs and microslopes will occur under the current weather conditions. Thus, the changes in the halogeochemical capacity of geosystems of solonetzic complexes primarily depend on the climatic conditions, although the capacity value remains almost constant with increasing total water reserves; the changes occur only between the conjugated soils of solonetzic complexes, which is of great importance for predicting the soil-geochemical status of the entire landscape.
机译:建立了Dzhanybek二维径向-轴向数学模型,用于在北里海地区的日冕复合体的地质系统中进行水和盐分的转移。该模型能够考虑地球化学联系并揭示微类别连接元素之间迁移过程的特征。模拟结果表明,盐渍化-脱盐过程的稳定发生在大约100年的稳定天气条件下。当天气条件改变时(该区域的总水分库从1978年开始增加),模拟结果表明,微凹陷中深色土壤盐渍化的趋势以及微高和微坡度上1-m厚土壤层中盐分的去除趋势。到2040年的预测表明,在当前的天气条件下,微凹陷中的盐类会大量堆积,微高地和微坡地土壤会脱盐。因此,固硅石配合物的地球系统的卤代化化学能力的变化主要取决于气候条件,尽管其能力值几乎随着总水储量的增加而保持恒定。变化仅发生在复合体的复合土壤之间,这对于预测整个景观的土壤地球化学状态具有重要意义。

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