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首页> 外文期刊>Agricultural and Forest Meteorology >Agricultural drought monitoring using European Space Agency Sentinel 3A land surface temperature and normalized difference vegetation index imageries
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Agricultural drought monitoring using European Space Agency Sentinel 3A land surface temperature and normalized difference vegetation index imageries

机译:农业干旱监测采用欧洲航天局哨兵3A陆地表面温度和归一化差异植被指数成像仪

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摘要

Agricultural drought is one of most damaging agricultural hazards worldwide that can bring significant agricultural losses and water scarcity. The use of satellite images for monitoring agricultural drought has received increasing research attention and has also been applied at both the regional and global scales. In this paper, the land surface temperature (LST) and radiance products of the new Sentinel-3A SLSTR (sea and land surface temperature radiometer) launched by European Space Agency (ESA) are used for the first time for estimating the vegetation temperature condition index (VTCI), which in turn is used for monitoring agricultural drought in the Hetao Plain of Inner Mongolia, China. This paper initially analyzes the correlation between LST and normalized difference vegetation index (NDVI) by using time series time MODIS LST and NDVI products under different vegetation growth conditions. The findings reveal that VTCI can only be used in warm seasons (late spring and summer periods) when negative correlations between LST and NDVI are observed. Therefore, VTCI images are captured in the study area between July and August 2017 by using Sentinel-3A SLSTR LST and NDVI and are utilized for drought investigation. These images reveal that the average VTCI of the cultivated land pixels in the study area has increased from 0.4511 on July 28 to 0.5229 on August 12 before declining to 0.4710 on August 18 due to the rainfall in the first period, thereby indicating that VTCI has a timely response to rainfall. Meanwhile, cross-comparison of VTCI values from Sentinel-3A SLSTR shows high consistency in terms of spatial distribution with that estimated from EOS MODIS products. The difference between these indices ranged from -0.1 to 0.1 for most points, especially in the cultivated land cover. Overall, the findings support the use of the LST and NDVI products of Sentinel-3A SLSTR in monitoring agricultural drought.
机译:农业干旱是全球最有害的农业危险之一,可以带来显着的农业损失和水资源稀缺。用于监测农业干旱的卫星图像的使用已获得越来越多的研究注意力,并在区域和全球范围内应用。本文首次使用欧洲空间机构(ESA)发射的新哨兵-3A SLSTR(SEA和陆地表面温度辐射计)的陆地表面温度(LST)和辐射产品首次用于估算植被温度条件指标(VTCI),其又用于监测中国内蒙古的Hetao Plang的农业干旱。本文最初通过在不同植被生长条件下使用时间序列时间Modis LST和NDVI产品分析LST和归一化差异植被指数(NDVI)之间的相关性。调查结果表明,当观察到LST和NDVI之间的负相关时,VTCI只能用于温暖季节(晚春季和夏季时期)。因此,通过使用Sentinel-3A SLSTR LST和NDVI来捕获VTCI图像在2017年7月和8月至8月的研究区域中,并用于干旱调查。这些图像表明,在8月12日,研究区域的耕地像素的平均VTCI从7月28日到8月12日增加到8月12日之前的0.4511,因为在第一个时期的降雨导致8月18日下降到0.4710,从而表明VTCI有一个及时回应降雨。同时,来自Sentinel-3A SLST的VTCI值的交叉比较显示了空间分布方面的高一致性,其与EOS Modis产品估计。这些索引之间的差异为-0.1至0.1,对于大多数点,特别是在耕地覆盖范围内。总体而言,调查结果支持使用Sentinel-3A SLST的LST和NDVI产品监测农业干旱。

著录项

  • 来源
    《Agricultural and Forest Meteorology》 |2019年第2019期|共9页
  • 作者单位

    Peking Univ Sch Earth &

    Space Sci Inst Remote Sensing &

    Geog Informat Syst Beijing 100871 Peoples R China;

    Peking Univ Sch Earth &

    Space Sci Inst Remote Sensing &

    Geog Informat Syst Beijing 100871 Peoples R China;

    Univ Leicester Ctr Landscape &

    Climate Res Sch Geog Geol &

    Environm Leicester Inst Space &

    Earth Observat Leicester Leics England;

    Peking Univ Sch Earth &

    Space Sci Inst Remote Sensing &

    Geog Informat Syst Beijing 100871 Peoples R China;

    Univ Leicester NCEO Dept Phys &

    Astron Earth Observat Sci Leicester Leics England;

    Peking Univ Sch Earth &

    Space Sci Inst Remote Sensing &

    Geog Informat Syst Beijing 100871 Peoples R China;

    Peking Univ Sch Earth &

    Space Sci Inst Remote Sensing &

    Geog Informat Syst Beijing 100871 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业基础科学;
  • 关键词

    Agricultural drought; Sentinel 3A LST; VTCI; Drought index;

    机译:农业干旱;Sentinel 3A LST;VTCI;干旱指数;

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