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HYDRAULIC CONDUCTIVITY OF A SILT LOAM SOIL AS AFFECTED BY SAMPLE LENGTH

机译:样品长度对土质壤土水力传导性的影响

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摘要

Soil hydraulic conductivity is often measured with small laboratory samples. Due to sampling artifacts or spatial variability, small-scale laboratojy samples may not yield representative conductivity measurements. The objective of this study was to analyze the effect of sample length on the saturated and near-saturated hydraulic conductivity (K). An undisturbed soil core of 9 cm diameter and 25 cm length was extracted from the A horizon of a no-till, silt loam soil, and K was determined at hydraulic heads (matric potential heads) of 0, -4, -8, -12, -16, and -22 cm-H{sub}2O under steady-state flow conditions. The core was then dissected incrementally from the bottom in 5 cm segments. At each dissection step, the remaining core and the cutoff core were re-saturated, and K was determined. Measured K varied considerably with core length, with the saturated conductivity being much more variable than the unsaturated conductivities. The use of consecutive 5 cm core segments to determine the effective K resulted in an underestimation of the conductivity compared to direct measurements on longer cores, possibly caused by smearing or compaction of cut surfaces during core dissection. Effective K determined from 5 cm core segments matched well with directly measured K only at hydraulic heads more negative than -16 cm-H{sub}2O. The results of this study highlight that small cores on the order of a few cm may not be representative of a larger soil profile such as the plow layer or crop root zone.
机译:土壤的水力传导率通常用少量的实验室样品进行测量。由于采样伪影或空间变异性,小规模实验室采样可能无法产生代表性的电导率测量值。这项研究的目的是分析样品长度对饱和和接近饱和水力传导率(K)的影响。从免耕粉砂壤土的A层中提取出直径9厘米,长度25厘米的原状土壤核心,并在0,-4,-8,-在稳态流动条件下为12,-16和-22 cm-H {sub} 2O。然后从底部开始以5 cm的段递增地解剖岩心。在每个解剖步骤中,将剩余的岩心和截止岩心重新饱和,并确定K。测得的K随磁芯长度的变化很大,饱和电导率比不饱和电导率变化更大。与直接测量更长的岩心相比,使用连续的5 cm岩心段来确定有效K会导致电导率被低估,这可能是由于岩心解剖过程中切割表面的涂抹或压实造成的。由5 cm岩心段确定的有效K与直接测得的K仅在比-16 cm-H {sub} 2O负数更大的液压压头上才能很好地匹配。这项研究的结果表明,几厘米量级的小岩心可能无法代表较大的土壤剖面,例如耕层或作物根部区域。

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