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Land surface phenological responses to land use and climate variation in a changing Central Asia.

机译:不断变化的中亚地区对土地利用和气候变化的地表物候响应。

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摘要

During the last few decades Central Asia has experienced widespread changes in land cover and land use following the socio-economic and institutional transformations of the region catalyzed by the USSR collapse in 1991. The decade-long drought events and steadily increasing temperature regimes in the region came on top of these institutional transformations, affecting the long term and landscape scale vegetation responses. This research is based on the need to better understand the potential ecological and policy implications of climate variation and land use practices in the contexts of landscape-scale changes dynamics and variability patterns of land surface phenology responses in Central Asia.;The land surface phenology responses -- the spatio-temporal dynamics of terrestrial vegetation derived from the remotely sensed data -- provide measurements linked to the timing of vegetation growth cycles (e.g., start of growing season) and total vegetation productivity over the growing season, which are used as a proxy for the assessment of effects of variations in environmental settings. Local and regional scale assessment of the before and after the USSR collapse vegetation response patterns in the natural and agricultural systems of the Central Asian drylands was conducted to characterize newly emerging links (since 1991) between coupled human and natural systems, e.g., socio-economic and policy drivers of altered land and water use and distribution patterns. Spatio-temporal patterns of bioclimatic responses were examined to determine how phenology is associated with temperature and precipitation in different land use types, including rainfed and irrigated agricultural types. Phenological models were developed to examine relationship between environmental drivers and effect of their altitudinal and latitudinal gradients on the broad-scale vegetation response patterns in non-cropland ecosystems of the desert, steppe, and mountainous regional landscapes of Central Asia.;The study results demonstrated that the satellite derived measurements of temporal cycles of vegetation greenness and productivity data was a valuable bioclimatic integrator of climatic and land use variation in Central Asia. The synthesis of broad-scale phenological changes in Central Asia showed that linkages of natural and human systems vary across space and time comprising complex and tightly integrated patterns and processes that are not evident when studied separately.
机译:在过去的几十年中,由于1991年苏联解体,该地区发生了社会经济和制度变革,中亚地区的土地覆盖和土地利用发生了广泛变化。十年来的干旱事件和该地区的气温体制稳步上升在这些制度变革的基础上,影响了长期和景观尺度的植被响应。这项研究的基础是需要更好地了解中亚地区地貌尺度变化动态和变异模式背景下气候变化和土地利用实践的潜在生态和政策含义。 -来自遥感数据的陆地植被的时空动态-提供与植被生长周期(例如生长季节开始)的时间和整个生长季节的植被总产量相关的测量值代理评估环境设置变化的影响。对苏联在崩溃之前和之后在中亚干旱地区的自然和农业系统中的植被响应模式进行了局部和区域评估,以表征人与自然系统耦合的新出现的联系(自1991年以来),例如社会经济以及改变土地和水的使用和分配方式的政策驱动因素。研究了生物气候响应的时空模式,以确定物候与不同土地利用类型(包括雨养和灌溉农业类型)的温度和降水如何相关。建立了物候模型,研究了环境驱动因素及其海拔和纬度梯度对中亚沙漠,草原和山区区域非作物生态系统中大规模植被响应模式的影响。卫星得出的植被绿色度和生产力数据的时间周期测量值是中亚气候和土地利用变化的有价值的生物气候整合者。中亚大规模物候变化的综合研究表明,自然系统和人类系统之间的联系会随时空变化,包括复杂且紧密集成的模式和过程,这在单独研究时并不明显。

著录项

  • 作者

    Kariyeva, Jahan.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physical Geography.;Remote Sensing.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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