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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Water and herbicide transient flow transport in field dried topsoils during controlled infiltration I. Water capillary and gravity-driven transient flows: A preliminary examination
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Water and herbicide transient flow transport in field dried topsoils during controlled infiltration I. Water capillary and gravity-driven transient flows: A preliminary examination

机译:受控渗透过程中田间干燥表土中水和除草剂的瞬态流传输I.水毛细管和重力驱动的瞬态流:初步检查

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摘要

A disc infiltrometer with a disc diameter of 80 mm has been operated in the field at -0.2 kPa few days after the Spring 2003 spraying of a mixture of bentazone and isoproturon on three dried tilled topsoils differing in texture but under the same climatic and vegetation conditions. We have derived both infiltration parameters from the disc infiltrometer records and capillary invasion parameters from the combined analyses of soil structure and soil water carried out on horizontal soil core slices of approximately 7 mm thickness. We assumed that the recorded transient flow can be subdivided into the capillary flow, estimated from sorptivity (differentiated linearization method), and the gravity-driven transient flow, calculated as the difference between the recorded total flow and the estimated capillary flow. Although gravity-driven flow occurred in this study, we assumed that capillary invasion theory is applicable because the topsoils were dry, leading to predominance of capillary flow, and the experiment was ended shortly after reaching the steady-state flow. Capillary invasion was the predominant transient flow process occurring into the silt loam soil whereas a combination of capillary flow and gravity-driven transient flow occurred into the sandy loam soil and the silty clay soil. Finally, capillary invasion theory was partly validated but more experimental and conceptual work is required.
机译:在2003年春季将苯达松和异丙隆的混合物喷洒到质地不同但在相同的气候和植被条件下的三种干燥的耕作表层土壤上喷洒了苯达松和异丙隆的混合物后,几天后,在-0.2 kPa的田间使用了圆盘直径为80 mm的圆盘渗透仪。我们已经从圆盘式渗透仪记录中得出了渗透参数,并且从对大约7毫米厚的水平土壤芯切片进行的土壤结构和土壤水的组合分析中得出了毛细管入侵参数。我们假设可以将记录的瞬态流量细分为根据吸水性(微分线性化方法)估算的毛细流量,以及重力驱动的瞬态流量,其计算为记录的总流量与估算的毛细流量之间的差。尽管本研究中发生了重力驱动的流动,但我们认为毛细管侵入理论是适用的,因为表层土壤干燥,导致毛细管流动占主导地位,并且在达到稳态流动后不久就结束了实验。毛细血管侵入是粉质壤土中发生的主要瞬态流动过程,而毛细流和重力驱动的瞬态流则是砂质壤土和粉质粘土中的一种。最后,毛细管侵入理论得到了部分验证,但还需要更多的实验和概念性工作。

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