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Differentiation of Soil Conditions over Low Relief Areas Using Feedback Dynamic Patterns

机译:利用反馈动态模式区分低洼地区土壤条件

摘要

In many areas, such as plains and gently undulating terrain, easy-to-measure soil-forming factors such as landform and vegetation do not co-vary with soil conditions across space to the level that they can be effectively used in digital soil mapping. A challenging problem is how to develop a new environmental variable that co-varies with soil spatial variation under these situations. This study examined the idea that change patterns (dynamic feedback patterns) of the land surface, such as those captured daily by remote sensing images during a short period (6-7 d) after a major rain event, can be used to differentiate soil types. To examine this idea, we selected two study areas with different climates: one in northeastern China and the other in northwestern China. Images from the Moderate Resolution Imaging Spectroradiometer (MODIS) were used to capture land surface feedback. To measure feedback dynamics, we used spectral information divergence (SID). Results of an independent-samples t-test showed that there was a significant difference in SID values between pixel pairs of the same soil subgroup and those of different subgroups. This indicated that areas with different soil types (subgroup level) exhibited significantly different dynamic feedback patterns, and areas within the same soil type have similar dynamic feedback patterns. It was also found that the more similar the soil types, the more similar the feedback patterns. These findings could lead to the development of a new environmental covariate that could be used to improve the accuracy of soil snapping in low-relief areas.
机译:在许多地区,例如平原和平缓起伏的地形,易于测量的土壤形成因素(例如地形和植被)与整个空间的土壤条件并没有共同变化,以至于它们可以有效地用于数字土壤制图。一个具有挑战性的问题是如何在这些情况下开发一种新的环境变量,该变量随土壤空间变化而变化。这项研究检验了以下观点:可以将陆地表面的变化模式(动态反馈模式),例如在重大降雨事件后的短时间内(6-7 d)每天通过遥感图像捕获的变化模式,用于区分土壤类型。为了检验这一想法,我们选择了两个气候不同的研究区域:一个在中国东北,另一个在中国西北。来自中等分辨率成像光谱仪(MODIS)的图像用于捕获地面反馈。为了测量反馈动态,我们使用了频谱信息散度(SID)。独立样本t检验的结果表明,相同土壤亚组的像素对和不同亚组的像素对之间的SID值存在显着差异。这表明具有不同土壤类型(亚组水平)的区域表现出明显不同的动态反馈模式,而同一土壤类型内的区域具有相似的动态反馈模式。还发现土壤类型越相似,反馈模式越相似。这些发现可能会导致新的环境协变量的发展,该协变量可用于提高低起伏地区土壤固结的准确性。

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