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首页> 外文期刊>African Journal of Agricultural Research >Surface and subsurface irrigation systems wetting patterns as affected by irrigation scheduling techniques in an arid region
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Surface and subsurface irrigation systems wetting patterns as affected by irrigation scheduling techniques in an arid region

机译:干旱地区灌溉计划技术影响下的地表和地下灌溉系统的润湿方式

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This study evaluated the wetting patterns around drip and subsurface irrigation systems (DI and SI), respectively with three irrigation scheduling techniques. The drip and subsurface irrigation systems were used to irrigate a tomato crop. The wetting patterns for each irrigation system and each irrigation scheduling technique was evaluated below the soil surface at different distances and depths from the emitter 24 and 48 h after irrigation. The soil moisture distribution patterns showed that the vertical movement of soil moisture was higher than the horizontal movement under both DI and SI systems. The overall wetted area, delimited by the wetting front was largest for the manually controlled irrigation scheduling with both DI and SI, and smallest for the Smart controller irrigation scheduling under both DI and SI systems. The effect of irrigation scheduling techniques on the water distribution pattern varied at different soil depths. Average coefficients of uniformity values for the DI and SI systems were 84.32 and 88.72%, respectively. The coefficients of uniformity for SI were higher by approximately 4.40% than for DI for all irrigation scheduling techniques, although there was variation in Cus values between the DI and SI systems with all three techniques. It can be concluded that a parameter related to the soil water content is an important consideration in estimation of soil wetting patterns with both DI and SI systems. The results of this research can be used in the design, operation, and management of DI and SI systems.
机译:本研究分别使用三种灌溉调度技术评估了滴灌和地下灌溉系统(DI和SI)周围的润湿模式。滴灌和地下灌溉系统用于灌溉番茄作物。在灌溉后24小时和48小时,在距地表不同距离和深度的土壤表面以下,评估每种灌溉系统和每种灌溉调度技术的润湿方式。土壤水分分布规律表明,在DI和SI系统下,土壤水分的垂直运动均高于水平运动。由DI和SI进行手动控制的灌溉计划时,总的湿润区域(由润湿前沿界定)最大,而在DI和SI系统下,由Smart Controller进行的灌溉计划最小。灌溉调度技术对不同土壤深度下水分配模式的影响。 DI和SI系统的均匀度平均值分别为84.32%和88.72%。在所有灌溉调度技术中,SI的均匀系数都比DI高约4.40%,尽管在这三种技术中,DI和SI系统之间的Cus值均存在差异。可以得出结论,与土壤含水量有关的参数是用DI和SI系统估算土壤润湿模式的重要考虑因素。这项研究的结果可用于DI和SI系统的设计,操作和管理。

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