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首页> 外文期刊>Journal of Applied Remote Sensing >Markov chains-cellular automata modeling and multicriteria analysis of land cover change in the Lower Nhecolandia subregion of the Brazilian Pantanal wetland
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Markov chains-cellular automata modeling and multicriteria analysis of land cover change in the Lower Nhecolandia subregion of the Brazilian Pantanal wetland

机译:巴西潘塔纳尔湿地下Nhecolandia次区域的Markov链细胞自动机建模和土地覆盖变化的多准则分析

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摘要

The dynamics of land use/land cover change in the Lower Nhecolandia wetland are marked by deforestation for pasture expansion, resulting in a real threat to the ecological stability. The aim of our work was to analyze the spatial distribution of land cover changes in the Lower Nhecolandia from 1985 to 2013 and to predict changes in trends for 2040. The mapping of land cover changes was developed using Landsat satellite images of 1985, 1999, 2007, and 2013, based on geographic object-based image analysis approach. This study uses integrated Markov chains and cellular automata modeling and multicriteria evaluation techniques to produce transition probability maps and describe the trajectory analysis methodology to construct a continuity of spatial and temporal changes for the wetland. The results of the multitemporal change detection classification show that, from 1985 to 2013, the forest woodland decreased by 6.89% and the grassland class increased by 18.29%. On the other hand, all water bodies showed a reducing trend, while the bare soil class increased compared to 1985, but did not present a regular trend of increase or decrease. From the present day, the trend for the future is a reduction of almost 6.4% by 2040. We found that deforestation actions will be concentrated in the areas with the highest concentration of saline lakes, constituting a serious threat to the natural functioning of this environmental system. (C) 2016 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:下Nhecolandia湿地的土地利用/土地覆被变化的动态特征是为了牧场扩张而砍伐森林,这对生态稳定构成了真正的威胁。我们的工作目的是分析1985年至2013年下Nhecolandia的土地覆盖变化的空间分布,并预测2040年的趋势变化。使用1985、1999、2007年的Landsat卫星图像绘制了土地覆盖变化的图,2013年,以及基于地理对象的图像分析方法。这项研究使用集成的马尔可夫链,元胞自动机建模和多准则评估技术来生成过渡概率图,并描述了轨迹分析方法,以构造湿地的时空连续性。多时相变化检测分类的结果表明,从1985年到2013年,森林林地减少了6.89%,草地类别增加了18.29%。另一方面,与1985年相比,所有水体均呈减少趋势,而裸土类别有所增加,但没有呈现出增加或减少的规律性趋势。从今天起,到2040年,未来的趋势是减少近6.4%。我们发现,森林砍伐行动将集中在盐湖浓度最高的地区,这对该环境的自然功能构成了严重威胁。系统。 (C)2016年光电仪器工程师学会(SPIE)

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