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首页> 外文期刊>Journal of Hydrology >Measuring and estimating the hydrological properties of a soil crust
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Measuring and estimating the hydrological properties of a soil crust

机译:测量和估算土壳的水文特性

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摘要

Formation of soil crusts results in reduced infiltration, increased runoff, and reduced rainfall and irrigation efficiency. Improved knowledge of the hydrological properties of soil crusts is required to improve simulation of infiltration and soil water movement in crop-soil-water models. Development of soil crust algorithms in soil water models is limited by a lack of in situ and laboratory approaches for measuring the physical properties of soil crusts. In this study we evaluate a number of novel and modified approaches for determining changes in the hydraulic properties of soil crusts formed in an intensively cropped sandy loam. Physical crust formation over a 71 day period resulted in an increase in surface soil density from 1.17 to 1.51 g cm(-3), a reduction in infiltration from 474 to 33.2 mm h(-1), and a decrease in unsaturated hydraulic conductivity at - 0.05 kPa from 136.9 to 10.14 mm h(-1). Whilst the ability to determine the van Genuchten properties of soil crusts was progressed, uncertainty with matching crust thickness to sampling depth, and difficulty measuring the total porosity of soil crusts resulted in error and uncertainty in the estimation of the theta s parameter and to a lesser extent the alpha and eta parameters. Further work is required to improve the development of simple, in situ means of measuring or estimating the physical properties of soil crusts.
机译:土壤结壳的形成导致渗透率降低,径流增加,降雨量降低和灌溉效率。需要改进土壳水文性质的知识,以改善作物 - 土水模型中渗透和土壤水运动的模拟。土壤水模型中土壳算法的发展受测量土壳物理性质的原位和实验室方法的限制。在这项研究中,我们评估了许多新颖的和改进的方法,用于确定在一个集中碎的砂土中形成的土壳的液压性能变化。 71天的物理外壳形成导致表面土壤密度增加到1.17至1.51g cm(-3),降低474至33.2mm H(-1),并降低不饱和液压导电 - 0.05kPa从136.9至10.14 mm H(-1)。虽然确定了土壤地壳的van nuanfchten属性的能力进行了进展,但是与采样深度匹配的外壳厚度的不确定性,并且难以测量土壳的总孔隙率导致误差和不确定度估计θ的参数和较小的误差和不确定性范围alpha和eta参数。需要进一步的工作来改善简单的发展,原位手段测量或估算土壳的物理性质。

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