Devising a mathematical model for displacement estimation of the wetting pattern center from the emitter location resulting from the soil surface slope

Q3 Environmental Science
M. T. Mahmood, Haqqi I. Yasin
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引用次数: 0

Abstract

This research aims to study the effect of land surface slope on the shape and size of the wetting pattern in the soil resulting from a dripping source, especially when there is a local surface runoff resulting from a water application rate higher than the soil infiltration capacity. As a result, it leads to a noticeable displacement of the center of the wetting pattern from the emitter position. The present research included finding this displacement mathematically and verifying its validity with the results of laboratory data. The studied data included 85 overlapping cases of the change in the water application rate and the slope of the soil surface for two levels of initial moisture and two soils of different textures. The results showed that the first devising equation could be used to estimate the wetting pattern center displacement from the emitter, resulting from the slope of the soil surface. The usage of the first devising equation was based on the of half the maximum horizontal surface advance (a), the maximum vertical advance under the emitter (b), and the soil surface slope, especially when the ratio (a/b) was within (0.9-1.1). The second devising equation can estimate the wetting pattern center displacement from the emitter resulting from the soil surface slope, regardless of the (a/b) ratio. That is, there was a considerable convergence between the displacement values of the center of the wetting pattern from the emitter position estimated by the first devising equation and the second devising equation when the value of (a/b) was close to one, which represents 87% of the 85 cases covered in this research.
根据土壤表面坡度产生的发射器位置设计润湿模式中心位移估计的数学模型
本研究旨在研究地表坡度对滴流源导致的土壤湿润模式形状和大小的影响,特别是当施水量大于土壤入渗能力导致局部地表径流时。因此,它导致湿润模式的中心从发射极位置明显位移。本文的研究包括用数学方法求出该位移,并用实验数据验证其有效性。研究数据包括两种初始水分水平和两种不同质地土壤的85个施水量和土壤表面坡度变化的重叠案例。结果表明,第一个设计方程可用于估算由土壤表面坡度引起的湿润模式中心位移。第一个设计方程的使用是基于最大水平地表推进量(a)的一半,最大垂直推进量(b)在发射器下,土壤表面坡度,特别是当比值(a/b)在(0.9-1.1)范围内。第二个设计方程可以估计由土壤表面坡度引起的湿润模式中心位移,而不考虑(a/b)比。即当(a/b)值接近1时,第一种设计方程与第二种设计方程所估计的湿润型中心距发射器位置的位移值有相当大的收敛性,占本研究85种情况的87%。
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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来源期刊
CiteScore
1.50
自引率
0.00%
发文量
56
审稿时长
8 weeks
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