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首页> 外文期刊>Journal of Hydrology >Investigation into preferential flow in natural unsaturated soils with field multiple-tracer infiltration experiments and the active region model
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Investigation into preferential flow in natural unsaturated soils with field multiple-tracer infiltration experiments and the active region model

机译:利用田间多示踪渗透试验和活性区模型研究天然非饱和土壤优先流

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Preferential flow in natural unsaturated soils is common, but difficult to characterize and predict. The major objective of this research is to investigate the preferential flow patterns with field-scale multiple- tracer infiltration experiments and to evaluate the capability of the active region model (ARM) in predicting the field-scale preferential flow and transport processes. For this purpose, the mixture solutions of iodine and bromide, iodine and nitrate, and again iodine and bromide, as the tracing solutes, were applied sequentially in two plots in natural unsaturated loam soil to illustrate the flow and transport processes. The distributions of soil water content and concentrations of applied tracing solutes (NO_3~- and Br~) were measured after experiments and predicted using ARM and the mobile-immobile region model (MIM). The relative root mean square errors (RRMSE) between those predictions (from ARM and MIM) and measured results were calculated for quantitatively evaluating the prediction accuracy and comparing the modeling efficiency of the two models. Both field observations and the ARM predictions indicated that there were macropores in Plot 1 but not in Plot 2, and the macropores in Plot 1 were mainly in the top 20 cm soil layer. The mixture solutions transported in the top 20 cm soil layer in Plot 1 were mainly from the soil surface directly and less affected by the macropore flow, while the preferential flow in the soil layer below 20 cm was considerably affected by the macropores and more applied mixture solutions were delivered into the deep soil layer quickly. Compared to the mixture solutions applied in the first and third steps, more mixture solution applied in the second step was transported to the deep soil layer by macropores, corresponding to obvious peaks of soil water content and NO_3~- concentration distributions observed in the deep soil layer in Plot 1. On the other hand, unstable flow was the major preferential flow behavior in Plot 2, inducing no obvious peaks of soil water content and solutes (NO_3~- and Br~) concentrations observed in the infiltrated soil profile. The comparisons between predicted and observed results in Plot 2 indicated that the ARM captured the overall behavior of unstable flow and associated tracer transport better than the MIM; however, to well characterize the macropore flow process, the ARM needs to be improved to include the effects of macropores.
机译:天然非饱和土壤中的优先流动是普遍现象,但难以表征和预测。这项研究的主要目的是利用田间规模的多示踪渗透实验研究优先流型,并评估活动区域模型(ARM)预测田间规模的优先流和运输过程的能力。为此,将碘和溴化物,碘和硝酸盐,再将碘和溴化物作为示踪溶质的混合溶液,分别在天然不饱和壤土中的两个样地中依次施用,以说明其流动和运输过程。实验后测量了土壤水分的分布和所施加的痕量溶质(NO_3〜-和Br〜)的浓度,并使用ARM和移动不动区域模型(MIM)进行了预测。计算了这些预测(来自ARM和MIM)与测量结果之间的相对均方根误差(RRMSE),以定量评估预测准确性并比较两个模型的建模效率。现场观察和ARM预测均表明,图1中有大孔,而图2中没有,而图1中的大孔主要在表层20 cm土层中。在图1中最顶部20 cm的土壤层中运输的混合溶液主要来自土壤表面,不受大孔流量的影响,而在20 cm以下的土壤层中优先流动受到大孔和更多施用混合物的影响溶液被迅速输送到深层土壤中。与第一步和第三步的混合溶液相比,第二步的混合溶液通过大孔运到深层土壤,这对应于在深层土壤中观察到的明显的水分峰值和NO_3〜-浓度分布另一方面,在图2中,不稳定的流动是主要的优先流动行为,在渗入的土壤剖面中没有引起明显的土壤水分和溶质(NO_3〜-和Br〜)浓度峰值的出现。在图2中的预测结果与观察结果之间的比较表明,ARM捕获的不稳定流和关联的示踪剂传输的总体行为要比MIM更好。但是,为了很好地表征大孔流动过程,需要改进ARM以包括大孔的影响。

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