首页> 外文期刊>Transactions of the ASABE >EVAPOTRANSPIRATION MAPPING WITH METRIC TO EVALUATE EFFECTIVENESS OF IRRIGATION IN FLOOD MITIGATION FOR THE DEVILS LAKE BASIN
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EVAPOTRANSPIRATION MAPPING WITH METRIC TO EVALUATE EFFECTIVENESS OF IRRIGATION IN FLOOD MITIGATION FOR THE DEVILS LAKE BASIN

机译:蒸发法令评价魔鬼湖盆地灌溉效果

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A period of excess precipitation since 1993 in the Devils Lake basin in northeastern North Dakota has caused extensive flooding of agricultural land and has raised the question of whether irrigation of agricultural crops to increase evapotranspiration (ET) might be an effective way to remove water from the basin. The objectives of this study were to compare ET estimates derived from application of the Mapping ET at High Resolution with Internalized Calibration (METRIC) algorithm for North Dakota conditions (METRICND) under irrigated and rainfed conditions and to assess the potential for irrigation to increase crop ET as a flood mitigation strategy. Weather data, land use maps, and Landsat 5 Thematic Mapper imagery from 2006, 2007, and 2008 were used as inputs to the METRICND model. The ET for irrigated crops (ETIrrigated) was estimated at five test sites from the Devils Lake Basin Water Utilization Test Project (DLBWUTP). The ET for the predominantly rainfed study area (ETRainfed) was estimated using land use maps to identify locations of the same crops as were present on the test sites. The METRICND model was compared to ET values derived from an eddy covariance (EC) system for approximately two months in 2007 at an irrigated alfalfa test site in the DLBWUTP; the mean absolute error between METRICND and the EC system for the comparison period was 0.51 mm d(-1). Linear regression of ET (in mm) for the test sites and the larger study area yielded ETIrrigated = 1.23 x ETRainfed + 4.77 with R-2 = 0.96, and a t-statistic indicated that the slope was greater than 0 at p = 0.001, indicating the potential for increased ET under irrigation. However, addition of large volumes of irrigation water to the predominantly poorly drained soils in the basin will cause waterlogging and trafficability problems. Installation of subsurface drainage may help alleviate waterlogging, improve crop productivity, and increase ET, but subsurface drainage brings its own complications of disposal of the drained water, salinity of the drainage effluent, and possible sodicity problems on some soils.
机译:自1993年以来,在北达科他州魔鬼湖盆地自1993年以来一段时间造成了广泛的农业土地洪水,并提出了农业农作物灌溉的问题,以增加蒸散量(et)可能是从中去除水的有效方法盆地。本研究的目的是比较灌溉和雨量条件下的内化校准(公制)在高分辨率高分辨率(公制)算法的估计估计,并在灌溉和雨量条件下评估灌溉潜力增加作物作为洪水缓解策略。 2006年,2007年和2008年的天气数据,土地使用地图和Landsat 5主题映射器图像被用作Metricnd模型的输入。灌溉作物(et诱导)的ET估计在魔鬼湖盆地水利用试验项目(DLBWUTP)的五个试验部位估计。使用土地使用地图估算了主要雨量的研究区域(Etrainfed),以识别测试部位上存在的同一作物的位置。将METRICND模型与从DLBWUTP中的灌溉的苜蓿试验部位进行了与涡流协方差(EC)系统的ET值衍生自2007年的灌溉苜蓿试验部位;比较时段的METRICND和EC系统之间的平均绝对误差为0.51mm D(-1)。对试验位点的ET(mM)的线性回归和较大的研究区域产生静脉= 1.23×eTrainfed + 4.77,R-2 = 0.96,并且T型统计表明斜率大于0,表明灌溉中增加的潜力。然而,在盆地中的主要灌溉水中增加了大量的灌溉水将导致涝渍和交通性问题。地下排水的安装可能有助于缓解涝渍,提高作物生产力,增加et,但地下排水带来了其自身的废弃水,排水流出物的并发症,以及一些土壤中可能的素质问题。

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