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Study on infiltration rate based on primary particle size distribution data in arid and semiarid region soils

机译:基于一次粒径分布数据的干旱半干旱地区土壤入渗率研究

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摘要

Soil particle size distribution (PSD) is used to estimate some soil processes, soil moisture characteristics, and infiltration rate (IR). Prediction of infiltration rate from soil texture data requires an accurate characterization of PSD. The objective of this study was to determine more important primary particle diameters that control IR. The experiments were conducted using double-ring method with constant head of 5 cm in 15 different soils and three replications. The range of measured IR for studied soils varied from 1.6 to 30.66 cm h~(?1). The results indicated that the primary PSD had a significant influence on IR. In other words, most D_n fractions had significant positive effect on the final IR. Among different fractions, D_(30), D_(40), and D_(60) showed higher relationships with IR than the others. These diameters are attributed to particles with diameter of 0.05, 0.08, and 0.16 mm, respectively. The results also showed that increasing the percent of sand have intensified influence on increasing the final IR. Reversely, clay and silt contents showed negative effects on final IR. Furthermore, the CaCO_3 had a meaningful effect on the IR that showed the importance of lime in arid and semiarid regions. Finally, it is revealed that the role of texture was important, especially in behavior of infiltration, runoff, and production capability.
机译:土壤粒径分布(PSD)用于估算某些土壤过程,土壤水分特征和入渗率(IR)。根据土壤质地数据预测入渗率需要对PSD进行准确表征。这项研究的目的是确定控制IR的更重要的一次粒径。实验是使用双环法在15种不同的土壤中以5厘米的恒定水头进行的,进行了3​​次重复实验。被测土壤的IR测量范围为1.6至30.66 cm h〜(?1)。结果表明,初级PSD对IR有显着影响。换句话说,大多数D_n馏分对最终IR有明显的积极影响。在不同的分数中,D_(30),D_(40)和D_(60)与IR的关系高于其他分数。这些直径分别归因于直径为0.05、0.08和0.16 mm的颗粒。结果还表明,增加砂粒百分比对增加最终IR的影响更大。相反,粘土和淤泥含量对最终IR显示出负面影响。此外,CaCO_3对IR产生了有意义的影响,显示了石灰在干旱和半干旱地区的重要性。最后,揭示了质地的作用很重要,特别是在渗透,径流和生产能力方面。

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