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Comparison of Surface and Subsurface Water Distribution Uniformity Under Center Pivot Irrigation System for Sugarcane in Colombia

机译:哥伦比亚甘蔗中心枢轴灌溉系统的表面和地下水分布均匀性比较

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The objective of this work was to determine the variability in the uniformity of the applied sheet of irrigation, on the surface of the soil, with central pivoting equipment in sugarcane, with the uniformity of humidity that occurs in the soil profile. With ASABE standard S.436.1, as the test procedure, moisture measurements were taken with a TDR equipment in three soil depths of 0-0.2 m, 0.2-0.4 m, and 0.4-0.6 m every 5 m away. Three evaluations were made, in the central pivot of the length of 430 m (58 ha), with two different application sheets, 12 mm and 22 mm, in two different years (2018 and 2019), that is, in two sugarcane production cycles. The crop age of 2-3 months is the same in the two cycles. Comparisons of the sheets on the soil surface are made with those of moisture collected before irrigation (AR), 24 h after irrigation (24hDR), and 48 h after an irrigation (48hDR). The coefficient of uniformity of Christiansen for the sheet on the 75, 78, and 80% was in values of 81.4 and 82.2%, and for the soil moisture at different depths, the applied sheet and the initial soil moisture condition were decisive. The uniformity in the soil profile was never higher than 5% of the presence on the surface, and on occasions, the sheet results became lower. Results showed that under the conditions of the crop and the operation of the equipment, the determination of the uniformity in the surface is a parameter that can be used to define the performance of an irrigation system.
机译:这项工作的目的是确定应用灌溉薄片的均匀性的可变性,在土壤的中央枢转设备中,含有中央枢转设备,湿度发生在土壤剖面中。随着ASABE标准S.436.1,作为测试程序,用TDR设备在三种土壤深度为0-0.2米,0.2-0.4米,0.4-0.6米的TDR设备中进行水分测量。制作了三种评价,在430米(58公顷)的中心枢轴,两种不同的涂层片,12毫米和22毫米,在两个不同的年份(2018年和2019)中,即在两个甘蔗生产周期中。两次循环中的作物年龄为2-3个月。土壤表面上的纸张比较是用灌溉(AR),24小时后收集的水分(24小时)和灌溉后48小时的水分(48小时)。在75,78和80%上为纸张的基督徒的均匀系数为81.4和82.2%,并且对于不同深度的土壤水分,涂层和初始土壤水分状况是决定性的。土壤谱的均匀性从来没有高于表面存在的5%,并且在偶尔地,纸张结果变低。结果表明,在作物的条件和设备的操作的条件下,表面的均匀性是可用于定义灌溉系统性能的参数。

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