Predicting the spatial distribution of water applied by subsurface drip in clay soil

Mayara O. Rocha, Amilton G. S. de Miranda, Policarpo A. da Silva, Adunias dos S. Teixeira, F. Cunha
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引用次数: 1

Abstract

ABSTRACT In subsurface drip irrigation systems, knowledge of the three-dimensional advancement of water in the soil is essential for selecting emitter spacing and installation depth. This research aimed to develop and test different mathematical models to estimate water distribution in the soil under subsurface drip irrigation. The experiment was set up in a completely randomized design with four replicates. The experimental arrangement was of split-plot in time, with different dripper installation depths in the plots (0, 5, 10, 15, 20, 25, and 30 cm) and in the subplots irrigation application times (0, 60, 120, 180, and 240 min). Three models (SLIDE 6.0, polynomial regression, and SPSS 2.0) were constructed to estimate the water distribution in the soil profile. All models showed statistical indexes within acceptable ranges. In comparison, the model generated in the numerical software SLIDE 6.0 was the one that presented the best performance, followed by SPSS 2.0 and polynomial regression. The generated models were efficient and simple, producing good results in predicting the water distribution in the soil profile under the studied conditions.
预测粘土中地下滴水的空间分布
摘要 在地下滴灌系统中,了解水在土壤中的三维推进情况对于选择喷头间距和安装深度至关重要。本研究旨在开发和测试不同的数学模型,以估算地下滴灌条件下水在土壤中的分布。实验采用完全随机设计,设四个重复。实验安排为分时间小区,小区滴灌器安装深度不同(0、5、10、15、20、25 和 30 厘米),分小区灌溉时间不同(0、60、120、180 和 240 分钟)。建立了三个模型(SLIDE 6.0、多项式回归和 SPSS 2.0)来估计土壤剖面中的水分分布。所有模型的统计指数都在可接受的范围内。相比之下,数值软件 SLIDE 6.0 生成的模型性能最佳,其次是 SPSS 2.0 和多项式回归。所生成的模型既高效又简单,在预测研究条件下土壤剖面的水分分布方面效果良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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