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Spatial association between dissection density and environmental factors over the entire conterminous United States

机译:spatial association between dissection density and environmental factors over the entire conterminous United states

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摘要

Previous studies of land dissection density (D) often find contradictory results regarding factors controlling its spatial variation. We hypothesize that the dominant controlling factors (and the interactions between them) vary from region to region due to differences in each region's local characteristics and geologic history. We test this hypothesis by applying a geographical detector method to eight physiographic divisions of the conterminous United States and identify the dominant factor(s) in each. The geographical detector method computes the power of determinant (q) that quantitatively measures the affinity between the factor considered and D. Results show that the factor (or factor combination) with the largest q value is different for physiographic regions with different characteristics and geologic histories. For example, lithology dominates in mountainous regions, curvature dominates in plains, and glaciation dominates in previously glaciated areas. The geographical detector method offers an objective framework for revealing factors controlling Earth surface processes.
机译:先前对土地解剖密度(D)的研究通常会发现与控制其空间变化的因素相矛盾的结果。我们假设,由于每个地区的局部特征和地质历史的差异,主要的控制因素(以及它们之间的相互作用)因地区而异。我们通过将地理检测器方法应用于美国本土的八个地理分区来检验该假设,并确定每个区域的主导因素。地理检测器方法计算行列式(q)的能力,以定量方式衡量所考虑因素与D之间的亲和力。结果表明,对于具有不同特征和地质历史的地理区域,q值最大的因素(或因素组合)不同。例如,岩性在山区占主导地位,曲率在平原中占主导地位,而冰川作用在先前的冰川地区占主导地位。地理探测器方法为揭示控制地球表面过程的因素提供了客观的框架。

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