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Impact of drained and un-drained soil conditions on water table depths, soil salinity and crop yields

机译:排水和不排水的土壤条件对地下水位深度,土壤盐分和作物产量的影响

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The purpose of this study was to determine the comparison of salt accumulation in soil profile and crop yields under drained and un-drained conditions.?Current field conditions were used to represent poorly drained conditions where drainage system was not installed yet.?Simulations were performed to illustrate well drained condition using the?water management simulation model while controlling soil salinity in root zone.?To put forward drainage system impacts;?soil salinity and relative crop yields for well drained conditions were compared to poorly drained conditions.?Soil, crop and site parameters were obtained from coordinated 40 soil sampling locations where?dry bean, winter wheat and fallow?crop rotations were?applied. Results of the study showed that water table decreased rapidly after installing proper drainage system. Percentage of salt decreases in soil profile?occurred by 24.1, 37.9 and 14.4% for wheat, bean and fallow locations respectively with adequate drainage conditions. On the drained soils, the relative yield of the winter wheat was higher by 11.2%, on the average, whereas that of bean was higher by 24.7%. Overall the net impact of yield enhancement due to drainage was about 36%. This shows the positive impact of drainage system on crop yields in this area.
机译:这项研究的目的是确定在排水和不排水条件下土壤剖面中盐分累积与作物产量的比较。使用当前田间条件代表尚未安装排水系统的排水条件较差的条件。提出了排水系统的影响;将排水良好的条件下的土壤盐度和相对作物产量与排水不良的条件进行了比较。并从协调的40个土壤采样地点获得了土壤参数,这些地点采用了干豆,冬小麦和休闲作物轮作。研究结果表明,安装适当的排水系统后,地下水位迅速下降。在排水条件良好的情况下,小麦,豆类和休耕地土壤盐分减少的百分比分别为24.1%,37.9%和14.4%。在排水的土壤上,冬小麦的相对产量平均提高了11.2%,而豆类的相对产量则提高了24.7%。总体而言,由于排水而提高产量的净影响约为36%。这表明排水系统对该地区农作物产量的积极影响。

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