Shape of cumulative land use systems' area distribution as a parameter of anthropogenic impact on landscapes

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Abstract

Statement of the problem and paper objective. Current challenges address global and regional threats to biotic and landscape diversity and the urgent need for its conservation, restoration and reproduction. They make it necessary to improve the tools for conceptual, information and calculating assessment of human activities impact on the environment. That is why the study of the landscapes anthropization, i.e. the process of their transformation through human activity, and the identification of the effects of this anthropization on the environment remains the most pressing problem of geography and geoecology. Given this, the paper objective was to substantiate, develop and verify new and sufficiently informative analytical tools for modeling anthropogenic impact of the land use and/or land cover (LULC) system on landscapes and/or physic-geographic taxons. Methods and results. The experience shows that the resumptive graphic solutions for the analysis of anthropogenic impact on landscapes can be correctly represented in the form of certain modified graphs of statistics. So, the classified scheme of the LULC system areas' cumulative distribution in landscapes and/or physic-geographic taxons was substantiated and constructed as analytical tool for modeling anthropogenic impact on landscapes / taxons. The scheme is based on the concept that the types of the mentioned distribution in its shape are adequate a certain category and the intensity of anthropogenic impact on landscapes or taxons. Properly the distribution of LULC system areas was typified by the ranges for the parameter of polynomial trends in the cumulative graphs of these areas in landscapes or their aggregations. Under these conditions, the scheme of areas' cumulative distribution operates with ten types of distribution – from excessively convex to excessively concave. These types also reflect different anthropogenic impacts on taxons – from weak to excessively strong. Verification of the scheme calculating LULC system areas' cumulative distribution was realized for the test megaregion, including 30 physic-geographic areas and 130 physic-geographic districts of the five regions in the zones of mixed (coniferous / broad-leaved) and broad-leaved forests and forest-steppe of Ukraine. Relevant digital choropleths concerning anthropogenic impact on these taxons were simulated and analyzed. Scientific novelty and practical significance. Scientific novelty is determined by the reason that the developed scheme and obtained model results are more parametrically diverse than in the existing procedures. This is caused by the fact that the proposed tools are more informative and statistically effective for identification of anthropogenic impact on landscapes and physic-geographic taxons than the average-weighted and other calculating anthropization indexes or schemes for consideration the impact of only dominant LULC systems. The verification of the developed tools for the test megaregion affirmed the general validity of the proposed new methodical approaches. The paper results are applicable for the improvement of procedures, schemes and projects of environmental management for plain terrestrial landscapes and their aggregations in midlatitudes.
作为人类活动对景观影响参数的累积土地利用系统面积分布形态
对问题和论文目标的陈述。当前的挑战是解决全球和区域对生物和景观多样性的威胁,以及对其保护、恢复和繁殖的迫切需要。它们使得必须改进对人类活动对环境的影响进行概念性、信息性和计算性评估的工具。这就是为什么景观的人类化研究,即人类活动对景观的转变过程,以及这种人类化对环境的影响的识别,仍然是地理学和地质生态学中最紧迫的问题。鉴于此,本文的目标是证实、开发和验证新的和信息充足的分析工具,以模拟土地利用和/或土地覆盖(LULC)系统对景观和/或自然地理分类的人为影响。方法与结果。经验表明,用于分析人为对景观的影响的恢复图形解决办法可以用某些修改的统计图形的形式正确地表示出来。因此,本文构建了LULC系统面积在景观和/或自然地理分类单元中累积分布的分类方案,作为模拟景观/自然地理分类单元受人为影响的分析工具。该方案的概念是,上述分布在其形状的类型是适当的,一个类别和人为影响的强度对景观或分类单元。在景观或其聚集体中,LULC系统区域的累积图中多项式趋势参数的取值范围可以很好地表征LULC系统区域的分布。在此条件下,区域累积分布方案以过凸到过凹的十种分布形式运行。这些类型也反映了不同的人类活动对分类群的影响——从弱到强。以乌克兰混交林(针叶林/阔叶林)阔叶林和森林草原5个区域的30个自然地理区域和130个自然地理区域为试验区域,实现了LULC系统面积累积分布计算方案的验证。模拟并分析了人类活动对这些分类群影响的相关数字剖面。具有科学新颖性和现实意义。科学的新颖性是由于所开发的方案和得到的模型结果比现有的程序参数更多样化。这是因为所提出的工具在识别对景观和自然地理分类的人为影响方面,比仅考虑优势LULC系统影响的平均加权和其他计算的人为指数或方案提供了更多的信息和统计上的有效性。为测试区域开发的工具的验证确认了所提议的新方法的总体有效性。本文的研究结果可为中纬度地区平原地貌及其聚落环境管理的程序、方案和项目的改进提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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