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Using the RS Method to Analyse Construction Land Changes in Tongren during 2002 and 2016

机译:用RS方法对铜仁市2002年和2016年建设用地变化进行分析。

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摘要

Timely and accurately obtained regional construction land information for environmental protection, ecological construction, and regional planning is important. In this study, we used Landsat7 ETM+ images acquired in 2002 and Landsat8 images acquired in 2016 as data sources, and performed maximum likelihood classification and class masking in order to extract construction land information in Tongren. The experimental results showed that the construction land of the study area was 306.07 km(2) in 2002 and 675.15 km(2) in 2016. This shows an increase of 369.08 km(2), which marks an increase by 120.59%, while the expansion ratio was quite larger. Construction land was mainly transferred from cultivated land (338.65 km(2)), and shows that large areas of cultivated land were replaced by construction land. The main reason for the construction land increase was urban expansion, and the county expansion ratio was between 3.72 and 7.92. Road construction, mining destruction, and residential expansion are additional reasons, but these have caused smaller changes to the area of construction land, with a change ratio of only 0.34. In mountainous Karst areas, urban expansion may cause ecological problems; therefore, we should protect the natural environment and maintain the landscape in its original state so as not to cause excessive disturbance to land resources.
机译:及时准确地获得区域建设用地信息对于环境保护,生态建设和区域规划具有重要意义。在这项研究中,我们使用2002年获得的Landsat7 ETM +图像和2016年获得的Landsat8图像作为数据源,并进行了最大似然分类和分类掩蔽,以提取铜仁的建设用地信息。实验结果表明,研究区的建设用地在2002年为306.07 km(2),在2016年为675.15 km(2)。增加了369.08 km(2),增长了120.59%,而膨胀率较大。建设用地主要来自耕地(338.65 km(2)),表明大量耕地被建设用地代替。建设用地增加的主要原因是城市扩张,县城扩张率在3.72和7.92之间。道路建设,采矿破坏和居民区扩建是另外的原因,但这些因素对建筑用地面积的影响较小,变化率仅为0.34。在喀斯特山区,城市扩张可能会引起生态问题。因此,我们应该保护自然环境,将景观保持在原始状态,以免对土地资源造成过度干扰。

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