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Simulation of soil water and salt transfer under mulched furrow irrigation with saline water

机译:咸水膜下沟灌条件下土壤水盐运移模拟。

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摘要

A mathematical model for simulating soil water and salt transfer under mulched furrow irrigation with saline water was presented. The model performance was evaluated by comparing the simulated values with observed data from the field experiment. The results demonstrated that the model performed reliably in the simulation of water and salt transfer under field conditions. In addition, the model was also used to simulate the process of soil water and salt transfer after saline water irrigation. The simulation demonstrated that the increment of soil water storage below the bottom of the furrow was nearly equal to the value below the top of the ridge immediately after the end of the irrigation (17 h) when the downward movement of irrigation water was restricted by the clay interlayer in soil. However, during the irrigation interval (192 h and 384 h after the irrigation), more water was maintained below the top of the ridge due to a considerable reduction of evaporation under mulched furrow irrigation. Soil salt mainly comes from saline water irrigation and the soil salt below the top of the ridge mainly increased at the redistribution phase (17 h). During the irrigation interval, soil conductivity in surface soil layer below the top of the ridge was smaller than that below the bottom of the furrow, which indicated that the distribution of soil salt below the top of the ridge was more uniform than below the furrow. The model presented here offers an efficient approach to estimate environmental effects of mulched furrow irrigation technology associated to saline water utilization. (C) 2014 Elsevier B.V. All rights reserved.
机译:提出了一种用盐渍水沟灌模拟土壤水分和盐分迁移的数学模型。通过将模拟值与现场实验观察到的数据进行比较来评估模型性能。结果表明,该模型在田间条件下的水盐传递模拟中性能可靠。此外,该模型还用于模拟盐水灌溉后土壤水分和盐分的迁移过程。模拟表明,在灌溉结束后(17 h),当灌溉用水的向下运动受到限制时,沟底部以下的土壤蓄水增量几乎等于垄顶以下的土壤蓄水量。土壤中的粘土夹层。但是,在灌溉间隔期间(灌溉后192h和384h),由于在沟渠覆盖灌溉条件下蒸发量大大减少,因此在垄顶下方保持了更多的水。土壤盐分主要来自盐水灌溉,垄顶以下的土壤盐分主要在重新分配阶段(17小时)增加。在灌水期间,垄顶以下表层土壤的电导率要比垄沟以下要小,这说明垄顶以下的土壤盐分比垄沟下的土壤盐分更均匀。这里介绍的模型提供了一种有效的方法来估算与盐水利用相关的沟灌技术对环境的影响。 (C)2014 Elsevier B.V.保留所有权利。

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