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首页> 外文期刊>International journal of applied earth observation and geoinformation >Unification of soil feedback patterns under different evaporation conditions to improve soil differentiation over flat area
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Unification of soil feedback patterns under different evaporation conditions to improve soil differentiation over flat area

机译:统一不同蒸发条件下土壤反馈模式,改善平坦地区的土壤分化

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摘要

Detailed and accurate information on the spatial variation of soil types and soil properties are critical components of environmental research and hydrological modeling. Early studies introduced a soil feedback pattern as a promising environmental covariate to predict spatial variation over low-relief areas. However, in practice, local evaporation can have a significant influence on these patterns, making them incomparable at different locations. This study aims to solve this problem by examining the concept of transforming the dynamic patterns of soil feedback from the original time-related space to a new evaporation-related space. A study area in northeastern Illinois with large low-relief farmland was selected to examine the effectiveness of this idea. Images from MODIS in Terra for every April-May period over 12 years (2000-2011) were used to extract the soil feedback patterns. Compared to the original time-related space, the results indicate that the patterns in the new evaporation-related space tend to be more stable and more easily captured from multiple rain events regardless of local evaporation conditions. Random samples selected for soil subgroups from the SSURGO soil map show that patterns in the new space reveal a difference between different soil types. And these differences in patterns are closely related to the difference in the soil structure of the surface layer. (C) 2016 Elsevier B.V. All rights reserved.
机译:有关土壤类型和土壤特性的空间变化的详细而准确的信息是环境研究和水文建模的关键组成部分。早期的研究将土壤反馈模式作为一种有前途的环境协变量,用来预测低浮雕地区的空间变化。但是,实际上,局部蒸发会对这些模式产生重大影响,从而使它们在不同的位置无法比拟。本研究旨在通过研究将土壤反馈的动态模式从原始的时间相关空间转换为新的蒸发相关空间的概念来解决这一问题。选择了伊利诺伊州东北部一个拥有大量低洼农田的研究区域,以检验这种想法的有效性。使用12年(2000-2011年)的每年4月至5月来自Terra的MODIS的图像来提取土壤反馈模式。与原始的时间相关空间相比,结果表明,新的蒸发相关空间中的模式往往更稳定,并且更容易从多个降雨事件中捕获,而与本地蒸发条件无关。从SSURGO土壤地图中为土壤亚组选择的随机样本显示,新空间中的模式揭示了不同土壤类型之间的差异。这些模式差异与表层土壤结构的差异密切相关。 (C)2016 Elsevier B.V.保留所有权利。

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