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Dye Tracing and Image Analysis for Quantifying Water Infiltration into Frozen Soils

机译:染料示踪和图像分析用于定量分析水在冻结土壤中的渗透

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摘要

New methods are needed to quantify infiltration into frozen soil, an important issue for agricultural management in northern latitude regions. A dye tracer method that uses digital image analysis and fluorescence imaging is presented for visualizing and quantifying flow pathways in frozen soils. The method was applied to three soil columns in a cold chamber. Two of them were packed with sand and the third was an undisturbed soil monolith. After complete freezing to -5°C, the columns were irrigated at above-freezing temperatures before they were vertically and horizontally sectioned to analyze pictures of the stained profiles and cross-sections. Image analysis was done for either the visual or fluorescent spectral ranges of three different tracers. Small samples were taken from the profiles to calibrate the dye tracer concentration. This was achieved by means of second-order polynomials of the R, G, and B values from the corresponding areas of the pictures with coefficients of determination of 0.92 to 0.99. This method results in concentration maps with a high spatial resolution reflecting the infiltration pattern. The experiment confirmed current hypotheses of infiltration mechanisms into frozen soil in that the infiltrability of the initially wet sand was restricted, whereas in the undisturbed soil monolith, the dye solution infiltrated through preferential pathways which were air filled at the time of freezing.
机译:需要新的方法来量化冻结的土壤中的入渗量,这是北纬地区农业管理的一个重要问题。提出了一种利用数字图像 分析和荧光成像的染料示踪法,用于可视化和量化冻土中的流动路径。该方法 应用于冷室中的三个土柱。其中的两个 装满了沙子,第三个是不受干扰的土壤 整料。完全冷冻至-5°C后,将柱子 在高于冰点的温度下灌溉,然后垂直 并水平切片以分析染色的 型材和横截面。对三种不同的 示踪物的 视觉或荧光光谱范围进行了图像分析。从配置文件中抽取少量样品以校准 染料示踪剂浓度。这是通过 图像对应区域的 值的R,G和B值的二阶多项式实现的,这些系数具有确定系数 0.92至0.99。该方法生成的浓度图具有 的高空间分辨率,反映了入渗模式。 实验证实了目前对冻土中入渗机理的假设。最初的 砂的渗透性受到限制,而在未扰动的 土壤整料中,染料溶液通过优先的 途径渗透,并在空气中充满冻结时间。

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  • 来源
    《Soil Science Society of America Journal》 |2000年第2期|505-516|共12页
  • 作者单位

    ETH Zürich, Institute of Terrestrial Ecology, Grabenstrasse 3, CH-8952 Schlieren, Switzerland;

    ETH Zürich, Institute of Terrestrial Ecology, Grabenstrasse 3, CH-8952 Schlieren, Switzerland;

    ETH Zürich, Institute of Terrestrial Ecology, Grabenstrasse 3, CH-8952 Schlieren, Switzerland;

    ETH Zürich, Institute of Terrestrial Ecology, Grabenstrasse 3, CH-8952 Schlieren, Switzerland;

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