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A plot-scale uncertainty analysis of saturated hydraulic conductivity of a clay soil

机译:粘土土壤饱和水力电导率的绘制规模不确定性分析

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摘要

Simulating soil hydrological processes at the plot or field scale requires using spatially representative values of the saturated soil hydraulic conductivity, K-s. Sampling campaigns should yield a reliable mean of K-s with a sustainable workload since measuring K-s at many points is challenging. Uncertainty analysis can be used to determine the lowest number of measurements that yield a mean K-s value with a specified accuracy level. Potential and limitations of this analysis were tested in this investigation for different extents of the sampled area and sampling densities. A clay soil was sampled intensively on two plots (plot area = 44 m(2)), two dates and using both small (0.15 m in diameter) and large (0.30 m) rings. With the small rings, intensively sampling an appropriate portion of the total plot area should be enough to establish the number of measurements yielding a certain accuracy level for the entire plot since this level remained nearly constant when the same number of measurements was performed on larger areas. Moreover, for these areas, the spatial resolution of the measurements did not influence appreciably the width of the confidence interval of the mean Ks value. However, working with larger rings was recommended since, in this case, the sampled area did not affect at all normalized confidence levels that, in addition, varied only a little with the number of the considered measurements of K-s. In practice, characterizing the plots required about 20 and 10 measurements with the smaller and the larger rings, respectively. The uncertainty analysis appears promising to plan practically sustainable soil sampling campaigns.
机译:在地块或田间尺度上模拟土壤水文过程需要使用饱和土壤导水率K-s的空间代表性值。由于在多个点测量K-s具有挑战性,采样活动应产生具有可持续工作量的可靠K-s平均值。不确定度分析可用于确定产生具有指定精度水平的平均K-s值的最低测量次数。在本次调查中,针对不同范围的采样区域和采样密度,对该分析的潜力和局限性进行了测试。在两个地块(地块面积=44 m(2))、两个日期和使用小(直径0.15 m)和大(0.30 m)环对粘土进行了集中采样。对于小环,集中采样总绘图面积的适当部分应足以确定整个绘图产生一定精度水平的测量数量,因为在较大区域上进行相同数量的测量时,该水平几乎保持不变。此外,对于这些区域,测量的空间分辨率对平均Ks值的置信区间宽度没有明显影响。然而,建议使用较大的环,因为在这种情况下,采样区域不会影响所有标准化置信水平,此外,这些标准化置信水平仅随考虑的K-s测量数量的变化很小。在实践中,使用较小的环和较大的环分别需要大约20次和10次测量来描述图的特征。不确定性分析似乎有望规划实际可持续的土壤采样活动。

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