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The experience of land cover change detection by satellite data

机译:卫星数据探测土地覆盖变化的经验

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摘要

Sigificant dependence from climate and anthropogenic influences characterize ecological systems of Kazakhstan. As result of the geographical location of the republic and ecological situation vegetative degradation sites exist throughout the territory of Kazakhstan. The major process of desertification takes place in the arid and semi-arid areas. To allocate spots of stable degradation of vegetation, the transition zone was first identified. Productivity of vegetation in transfer zone is slightly dependent on climate conditions. Multi-year digital maps of vegetation index were generated with NOAA satellite images. According to the result, the territory of the republic was zoned by means of vegetation productivity criterion. All the arable lands in Kazakhstan are in the risky agriculture zone. Estimation of the productivity of agricultural lands is highly important in the context of risky agriculture, where natural factors, such as wind and water erosion, can significantly change land quality in a relatively short time period. We used an integrated vegetation index to indicate land degradation measures to assess the inter-annual features in the response of vegetation to variations in climate conditions from low-resolution satellite data for all of Kazakhstan. This analysis allowed a better understanding of the spatial and temporal variations of land degradation in the country.
机译:哈萨克斯坦的生态系统是气候和人为影响的显着依赖。由于共和国的地理位置和生态状况,哈萨克斯坦全境存在着营养退化的地点。荒漠化的主要过程发生在干旱和半干旱地区。为了分配植被稳定退化的地点,首先确定了过渡带。过渡区植被的生产力在某种程度上取决于气候条件。利用NOAA卫星图像生成了多年的植被指数数字地图。根据结果​​,通过植被生产力标准对共和国领土进行了分区。哈萨克斯坦的所有耕地都在危险的农业地区。在高风险农业的背景下,估算农业土地的生产力非常重要,因为在这种农业中,风和水蚀等自然因素会在相对较短的时间内显着改变土地质量。我们使用综合植被指数来指示土地退化措施,以评估哈萨克斯坦全境的低分辨率卫星数据对气候条件变化的响应中的年际特征。通过分析,可以更好地了解该国土地退化的时空变化。

著录项

  • 来源
    《Frontiers of Earth Science》 |2012年第2期|p.140-146|共7页
  • 作者单位

    The Institute of Space Research National Centre of Space Research and Technology of the Republic of Kazakhstan, Almaty, 050010, Kazakhstan;

    The Institute of Space Research National Centre of Space Research and Technology of the Republic of Kazakhstan, Almaty, 050010, Kazakhstan;

    The Institute of Space Research National Centre of Space Research and Technology of the Republic of Kazakhstan, Almaty, 050010, Kazakhstan;

    The Institute of Space Research National Centre of Space Research and Technology of the Republic of Kazakhstan, Almaty, 050010, Kazakhstan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    remote sensing; NOAA; land cover changes; vegetation indexes;

    机译:遥感NOAA土地覆被变化植被指数;
  • 入库时间 2022-08-17 13:14:12

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