首页> 外文期刊>Ekologia Bratislava >THE APPLICATION OF DIRECTIONAL UNIVARIATE STRUCTURE FUNCTIONS ANALYSIS FOR STUDYING THE SPATIAL ANISOTROPY OF ENVIRONMENTAL VARIABLES
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THE APPLICATION OF DIRECTIONAL UNIVARIATE STRUCTURE FUNCTIONS ANALYSIS FOR STUDYING THE SPATIAL ANISOTROPY OF ENVIRONMENTAL VARIABLES

机译:定向单变量结构函数分析在研究环境变量的空间各向异性的应用

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摘要

As anisotropy is a fundamental property of the real-world environmental spatial variables, the conventional omnidirectional variograms and correlograms do not provide means enough to characterise spatial dependence between observations. The purpose of this article is to introduce directional univariate structure functions analysis to explore and quantify the spatial anisotropy of environmental variables. Analysis of six environmental variables within three physical–geographical regions proved the leading role of relief for landscape differentiation; it also defined the size and extension of major landforms responsible for the organisation of spatial pattern. The arrangement of the vegetation patches demonstrated linkage with the major landforms. The other relief derivatives, being prone to noise and artefacts in the original data, showed a random-variable type of behaviour. In the lack of any particular spatially anisotropic structure, the results of the analysis can provide a clue about meaningful distances of interest at finer scales. The approach can also be an exploratory tool for discrete measurements to recognise the features of spatial continuity.
机译:由于各向异性是实际环境空间变量的基本特性,传统的全向变量函数和相关图不能提供足以在观察之间表征空间依赖的装置。本文的目的是介绍定向单变量结构功能分析,以探索和量化环境变量的空间各向异性。三个物理地区内六个环境变量的分析证明了浮雕对景观分化的主导作用;它还定义了负责空间模式组织的主要地形的大小和延伸。植被贴片的布置表现出与主要地貌的连锁。另一个浮雕衍生物,在原始数据中容易出现噪音和人工制品,显示出随机变量的行为类型。在缺乏任何特定的空间各向异性结构中,分析结果可以提供关于更精细的尺度的有意义景点的线索。该方法还可以是用于离散测量的探索工具,以识别空间连续性的特征。

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