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首页> 外文期刊>Applied Engineering in Agriculture >SUBIRRIGATION SYSTEM PERFORMANCE AND EVALUATION IN THE RED RIVER VALLEY OF THE NORTH
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SUBIRRIGATION SYSTEM PERFORMANCE AND EVALUATION IN THE RED RIVER VALLEY OF THE NORTH

机译:北方红河谷的仿真系统性能和评价

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摘要

Using a subsurface drainage system, subirrigation (SI) applies water below the ground surface and raises the phreatic water to within or near the root zone. SI is relatively new to the Red River Valley (RRV) of the North in eastern North Dakota (ND) and west central Minnesota (MN). In 2011, two SI field sites in the RRV were installed and have shown promising results in optimal water management and increasing agricultural production. Unlike a surface irrigation system, SI supplies water below the ground surface over a long duration; water loss is generally through crop transpiration; and SI leads to negligible water loss via wind, surface runoff and evaporation. Therefore, a new method was developed to evaluate the SI system performance. Water application efficiency (E-a) was calculated through the soil moisture changes in the root zone before and after the SI application with known amounts of SI, precipitation, and evapotranspiration (ET). Uniformity coefficient (UC) and distribution efficiency of low quarter (DULQ) were estimated from the total depth of water stored in the root zone. The SI system performance in 2014 and 2015 showed that the E-a was over 100% in 2014 and 78% for the ND 2015 site-year. The E-a values were high, indicating that the SI system either performed better than typical surface irrigation systems with minimal water loss, or the SI system and/or the methods need improvement in accurate ET estimation to help close the water budget. The UCs were 67% to 86%, and the DULQs were 48% to 78%, much lower than typical sprinkler and surface irrigation systems, possibly due to the unique SI flow path. Overall, the evaluation indicated that a SI system is effective as a water supply, but the uniformity needs to be improved with a longer SI duration or smaller flow rate or an alternative SI system design.
机译:使用地下排水系统,防水(Si)将水施加在地面下方的水,并将潜水水提升到根区内或附近。 SI对北达科他州东部北部的北部红河谷(RRV)和明尼苏达州西部(MN)的红河谷(RRV)相对较新。 2011年,安装了RRV中的两个SI现场网站,并在最佳水管理和增加农业生产中显示了有希望的结果。与表面灌溉系统不同,Si在持续时间内为地面下方提供水;水分损失通常是作物蒸腾;和SI通过风,表面径流和蒸发导致可忽略的水分损失。因此,开发了一种新方法来评估SI系统性能。通过在Si应用之前和之后的根区的土壤水分变化,用已知量的Si,沉淀和蒸散蒸腾(ET)来计算水应用效率(E-A)。从储存在根区中的水的总深度估计低季度(DULQ)的均匀性系数(UC)和分布效率。 2014年和2015年的SI系统性能表明,2014年E-A超过了100%,并为2015年的遗址为78%。 E-A值高,表明SI系统比具有最小水损失的典型表面灌溉系统,或SI系统和/或方法需要改进准确的ET估计,以帮助关闭水预算。 UCS为67%至86%,Dulqs为48%至78%,远低于典型的喷水灭火和表面灌溉系统,可能是由于独特的Si流动路径。总的来说,评估表明,SI系统作为供水有效,但需要改善均匀性,以更长的Si持续时间或更小的流速或替代的SI系统设计。

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