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Modeling Water Stress Effect on Soil Salinity

机译:对土壤盐度建模水胁迫影响

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As it is widely known the earth is experiencing a climate change. The primary effect of this change is the increase trend in global temperature. This, in turn, results in increased number of events in flooding, and drought in different parts of the world. A secondary effect is the change in water and soil salinity. A considerable portion of the cultivated land in the world is affected by salinity, limiting productivity potential. About 20 million ha of total 230 million ha of irrigated land in the world are salt affected. The climate change is expected to worsen this situation. This study explores the water stress effect on soil salinity. For this purpose, a model is developed to simulate salt transport in a layered soil column. The soil salinity transport model development involves two parts: (1) modeling salt movement through sail layers due to runoff, percolation, and lateral subsurface flow, and (2) modeling dissolution and precipitation of gypsum which acts as sink or source for salts in soil. The model is calibrated and validated with measured data. The soil is irrigated under optimal and water stress irrigation conditions. The major model parameters affecting the soil salinity are found to be wilting point, field capacity, hydraulic conductivity, initial soil salinity, and soil gypsum concentration.The results have revealed that water stress results in high concentration of salt accumulation in soil columns.
机译:因为它广为人知,地球正在经历气候变化。这种变化的主要效果是全球温度的增加。反过来,这导致洪水的事件数量增加,以及世界不同地区的干旱。二次效果是水和土壤盐度的变化。世界上耕地的相当大部分受到盐度的影响,限制了生产率潜力。世界上大约2000万公顷的灌溉土地总计为2.3亿公顷的灌溉土地是受影响的盐。预计气候变化将使这种情况恶化。本研究探讨了对土壤盐度的水分效应。为此,开发了一种模型以模拟层状土柱中的盐输送。土壤盐度运输模型开发涉及两部分:(1)由于径流,渗透和横向地下流动,通过帆板,(2)模拟石膏的溶解和沉淀,其用作土壤中的盐或源的石膏溶解和沉淀。使用测量数据校准模型并验证。在最佳和水胁迫灌溉条件下灌溉土壤。发现影响土壤盐度的主要模型参数是萎缩点,现场容量,液压导电性,初始土壤盐度和土壤石膏浓度。结果表明,水胁迫导致土柱中的高浓度盐积聚。

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