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Using Temperature Vegetation Drought index for Monitoring Drought Based on Remote Sensing Data

机译:基于遥感数据的温度植被干旱指数监测干旱

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Drought is one of the major natural disasters in China, it has extremely affected national food security. In this study, Normalized Difference Vegetation Index (NDVI) and surface temperature (Ts) were calculated by using 8-day composite Moderate-Resolution Imaging Spectroradiometer (MODIS) reflectance product data MOD09A1 and MOD11A2, then NDVI-Ts feature space was obtained and dry edge and wet edge equation was fit. According to coefficients of dry edge and wet edge equation, Temperature Vegetation Drought Index (TVDI) will be calculated and refer it as a drought monitoring indicator. In addition, drought monitoring and classification of Shandong province (China) was completed by TVDI from February to May,2011. Furthermore, the drought classification diagram was made and the drought area in each period was counted. The results showed revealed that: NDVI-Ts feature was roughly a triangular shape in the two-dimensional plane, and drought conditions could be better monitored through TVDI. Finally, the desktop demonstration system of drought monitoring was designed and some general functions were realized based on ArcGis Engine.
机译:干旱是中国的主要自然灾害之一,它具有极大影响的国家粮食安全。在该研究中,通过使用8天复合中频分辨率成像分光仪(MODIS)反射产品数据MOD09A1和MOD11A2来计算归一化差异植被指数(NDVI)和表面温度(TS),然后获得NDVI-TS特征空间并干燥边缘和湿边方程很合适。根据干边和湿边方程的系数,将计算温度植被干旱指数(TVDI),并将其称为干旱监测指标。此外,山东省(中国)的干旱监测和分类由TVDI从2011年2月至5月完成。此外,制造干旱分类图,计算每个时段的干旱区域。结果表明:NDVI-TS特征大致在二维平面中的三角形,可以通过TVDI更好地监测干旱条件。最后,设计了干旱监测的桌面示范系统,基于ArcGIS发动机实现了一些通用功能。

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