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Dynamic trend of land degradation/restoration along Indira Gandhi Canal command area in Jaisalmer District, Rajasthan, India: a case study

机译:印度拉贾斯坦邦斋沙默尔地区英迪拉·甘地运河指挥区土地退化/恢复的动态趋势:一个案例研究

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摘要

Land cover is a crucial component in assessment of biodiversity and ecosystem services. In arid regions, land cover is mostly composed of aeolian structures which exhibit fragile environmental scenario. The major challenge in this highly dynamic landscape was conversion of desertic land to intensive land use such as agricultural farmlands. To overcome this challenge Indira Gandhi Canal (IGC) and its branches were extended over this district. The main interest of this research was to investigate net primary productivity (NPP) changes using multi-temporal satellite imagery and meteorological datasets within the timeframe of 30years from 1982 to 2012 over this region. This study was taken up to assess the impact of canal in and around IGC command area in Jaisalmer District to understand the consequence on desertic environment. Analysis of three decades terrestrial NPP over IGC command area in Jaisalmer District, India, shows significant increase in NPP. The satellite data-based analysis of NPP as well as validation with the optical data in the study region revealed that this increasing trend in NPP is basically associated to increase in canal networks. The water supply from the canal gradually led to expansion of irrigation in the agricultural fields leading to change in dynamics of the area. This systematic and long-term NPP analysis will be useful to strengthen our understanding for the role of regional land cover types and impact of their change in the national and global carbon cycle for understanding land degradation and desertification scenario in the study area.
机译:土地覆盖是评估生物多样性和生态系统服务的关键组成部分。在干旱地区,土地覆盖主要由风沙结构组成,呈现出脆弱的环境。在这种高度动态的景观中,主要挑战是将荒漠土地转变为集约土地用途,例如农业耕地。为了克服这一挑战,英迪拉·甘地运河(IGC)及其分支机构已扩展到该地区。这项研究的主要兴趣是,在1982年至2012年的30年时间内,使用多时相卫星图像和气象数据集来调查该地区的净初级生产力(NPP)变化。进行这项研究是为了评估斋沙默尔地区IGC指挥区及其周围地区的运河影响,以了解其对沙漠环境的影响。对印度Jaisalmer区IGC指挥区上空的三十年陆地NPP进行的分析显示,NPP显着增加。基于卫星数据的NPP分析以及对研究区域的光学数据的验证表明,NPP的这种增加趋势基本上与运河网络的增加有关。运河的供水逐渐导致农田灌溉的扩大,从而改变了该地区的动态。这项系统的长期NPP分析将有助于增进我们对区域土地覆盖类型的作用及其变化在国家和全球碳循环中的影响的理解,以了解研究区域的土地退化和荒漠化情况。

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