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Assessment of Aeolian Desertification in Korqin Sand, China

机译:中国科尔沁沙地的风沙荒漠化评估

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Desertification is a worldwide concern and the assessment of aeolian desertification has become one hotspot in global ecosystem research. In this paper, hyperspectral data acquired from modular OMIS-I imaging spectrometer, combined with ETM data and field survey data, was used to assess the aeolian desertification in Korqin Sand, Inner Mongolia, China by pixel-level. The results indicated that hyperspectral image, combined with ETM image and little field works, is capable to monitor and assess desertification through quantitative retrieval of assessing parameters directly from hyperspectral data or indirectly from the encoding map by visual interpretation of hyperspectral image and ETM image. For the retrieval of vegetation biomass and coverage, polynomial fit curve is suitable to regions where shrubs and grasses coexist, while linear fit curve is suitable to single vegetation type and was highly restricted by region. The retrieval of surface soil water content based on soil thermal inertia is suitable in flat terrain and sparse vegetation, and it can resist vegetation disturbance. The algorithms for numerical evaluation and quantitative retrieval for hyperspectral image are also practicable for aeolian desertification in Korqin Sand, China.
机译:荒漠化是全世界关注的问题,对风沙荒漠化的评估已成为全球生态系统研究的热点之一。本文利用模块化OMIS-I成像光谱仪获得的高光谱数据,结合ETM数据和现场调查数据,以像素级评估了中国内蒙古科尔沁沙地的风沙荒漠化。结果表明,高光谱图像结合ETM图像和很少的野外工作,能够通过定量检索直接来自高光谱数据的评估参数或通过可视化解释高光谱图像和ETM图像的间接方式从编码图进行定量检索,从而监测和评估荒漠化。为了获取植被生物量和覆盖率,多项式拟合曲线适合于灌木和草类共存的区域,而线性拟合曲线则适合于单一植被类型,并且受区域的限制很大。基于土壤热惯量的地表土壤含水量反演适用于平坦地形和稀疏植被,可以抵抗植被扰动。用于高光谱图像的数值评估和定量检索的算法对于中国科尔沁沙地的风沙化也是可行的。

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