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Quantification of lateral seepage from farmland during maize growing season in arid region

机译:干旱地区玉米生长季区农田横向渗流量化

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Quantification of lateral seepage from farmland under basin irrigation in arid region is essential for the evaluation of irrigation water use efficiency and for understanding its contribution to local natural vegetation. Field monitoring and numerical simulation of soil water dynamics were conducted by HYDRUS-2D in the oasis of middle reaches of Heihe River Basin during maize growing seasons in 2012 and 2013. The monitored results demonstrate that there was a sharp increase of soil moisture in the adjacent area of the farmland after each irrigation event, indicating there was noticeable lateral seepage from the farmland after irrigation. HYDRUS-2D model calibration/validation results compared well with the monitored data, with r=0.71/0.67, RMSE=3.63:/4.62%, RE=0.12/0.14. Further scenario simulations showed that the lateral seepage ratio (i.e., the ratio of total lateral seepage to the total irrigation in the studied farmland) increased with the increase of irrigation quota and decreased with the increase of the farmland area. Lateral seepage ratio would increase in case of fine-textured soil under the root zone and decrease with coarse-textured soil underneath the root zone. In terms of the general irrigation schedule, farmland area and soil texture in the middle reaches of Heihe River Basin, the annual later seepage from the farmlands were estimated to be about 1.13 x 10(5) m(3) to 6.98 x 10(6)m(3). (C) 2017 Published by Elsevier B.V.
机译:在干旱地区盆地灌溉下的农田横向渗流的定量对于评估灌溉用水效率和理解其对局部天然植被的贡献至关重要。 2012年和2013年玉米生长季节中游的土壤水动力学的现场监测和数值模拟。2012年和2013年玉米生长季节。监测结果表明,相邻的土壤水分急剧增加每次灌溉事件后农田面积,表明灌溉后遇到耕地的潜伏渗出。 Hydrus-2D模型校准/验证结果与受监控数据相比,R = 0.71 / 0.67,RMSE = 3.63:/ 4.62%,RE = 0.12 / 0.14。进一步的情景模拟表明,随着灌溉配额的增加,横向渗流比(即,学习农田总灌溉的总灌溉的比率与灌溉配额的增加,并随着农田的增加而减少。在根区域下细色织状土壤的情况下,横向渗流比率将增加,并在根区下方用粗糙纹理土壤减少。就海河流域中游的一般灌溉进度,农田和土壤质地而言,农田的年后渗流估计为1.13 x 10(5)米(3)至6.98 x 10(6 )m(3)。 (c)2017年由Elsevier B.V发布。

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