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Long-Term Solute Transport under Semi-Arid Conditions: Pedon to Field Scale

机译:半干旱条件下的长期溶质运移:Pedon到田间规模

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摘要

Knowledge of factors controlling the spatial and temporal variability of transport in the vadose zone is limited. The objective of this study was to quantify the transport of a tracer at the field scale after 34 yr of low transient flow under semiarid conditions. A Cl– tracer was surface applied to plots (a Chernozemic soil) near Saskatoon, Canada. Thirty-four years later, soil cores (6-m depth) were taken along a 90-m transect (1-m spacing) and two embedded 10-m transects (0.2-m spacing) along one of the plots. The cores were sectioned (0.1-m intervals) and analyzed for Cl–, bulk density, and soil water content. Although the site is level, slight differences in surface slope had a great effect on surface water redistribution, soil profile development, and the movement of water and solute. After 34 yr, the mean travel depth of the Cl– on a slight knoll was 1.70 m below the surface, compared with 2.76 m in a very slight depression 20 m away. The grade between knoll and depression was 1.8%. After a 19-mo fallow period, considerably more redistributed surface water was stored in the soil in the slight depression than on the nearby level area. The spatial pattern of the increase in soil water storage (19 mo) was significantly correlated to Cl– transport (34 yr) suggesting that the measured pattern of increase in soil water storage was typical of long-term patterns. The measurements suggested that 10% of redistributed water ended up as increased deep drainage.
机译:控制渗流区内运输时空变异性 的因素的知识是有限的。 的目的是量化在半干旱 条件下低瞬态流量34年后在 场尺度上示踪剂的迁移。将Cl – 示踪剂表面施用于加拿大萨斯卡通附近的地块 (黑钙土)。后来的34年,沿着90米长的断面(1米间距)和两个埋入的10米长的断面(6米深)取土心(6米深)(间距为0.2米) 。将岩心切成段(以0.1米间隔) ,并分析Cl – ,堆积密度和土壤含水量。 尽管场地水平,表面坡度 的细微差异对地表水的重新分配,土壤剖面 的发展以及水和溶质的运动都有很大的影响。在34 yr之后,Cl – 在一个小丘 上的平均行进深度为地表以下1.70 m,而在地面上为2.76 m。距地面20 m处非常 。丘陵和抑郁之间的等级 为1.8%。经过19个月的休耕期后,土壤中略微降低的 中重新分配的 地表水比附近的水平区域更多。土壤贮水量(19 mo)中 的空间格局与 Cl – 输送(34年)显着相关。土壤贮水量增加的模式 是长期模式的典型特征。 测量结果表明,随着深度的增加,10%的再分配水结束了 up排水。

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  • 来源
    《Vadose Zone Journal》 |2006年第1期|365-376|共12页
  • 作者单位

    Alberta Agriculture, Food and Rural Development, Irrigation Branch, 100, 5401 First Avenue South, Lethbridge, AB, Canada T1J 4V6;

    University of Alberta, 3rd Floor University Hall, Edmonton, AB, Canada T6G 2J9;

    Department of Renewable Resources, 751 General Services Building, University of Alberta, Edmonton, AB, Canada T6G 2H1;

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