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1.
利用MODIS数据产品进行全国干旱监测的研究   总被引:30,自引:0,他引:30       下载免费PDF全文
利用MODIS植被指数和陆地表面温度产品建立全国3个农业气候区NDVI-Ts、NDVI-ΔT和NDVI-ATI空间,并由NDVI-Ts、NDVI-ΔT和NDVI-ATI空间分别建立温度植被干旱指数(TVDI)、温差植被干旱指数(DTVDI)和表观热惯量植被干旱指数(AVDI)3个干旱评价指标研究全国干旱分布,利用实测土壤含水量对3个干旱指标进行检验评价.NDVI-ΔT空间中的湿边基本与横坐标平行,表明当土壤水分处于饱和状态或植被完全无水分胁迫条件下,植被和土壤对缓冲环境温度变化的能力大体相当;由NDVI-ATI空间看出,随着植被覆盖增加,表观热惯量有增加的趋势.对比3个干旱评价指标表明:当监测范围较大,区域内地形复杂时,由NDVI-Ts空间计算的TVDI评价干旱最合理,由NDVI-ΔT空间计算的DTVDI在干旱监测中也具有一定的价值,而由NDVI-ATI空间计算的AVDI已经不能合理评价干旱.  相似文献   

2.
扎西央宗  陈军  李林  叶帮苹 《冰川冻土》2014,36(5):1245-1250
干旱是一种危害较大的自然灾害, 影响范围大、持续时间长. 随着经济发展和人口的增加, 水资源短缺现象日益严重, 这也导致了干旱范围的扩大和干旱化程度加重. 为降低业务人员负担, 提高业务工作效率, 探讨了基于MODIS遥感数据的西藏干旱监测系统实现的关键技术. 首先, 阐述了MODIS 轨道数据快速投影处理的正向投影处理技术原理, 然后分析了温度植被干旱指数算法(TVDI)及其实现, 最后, 将干旱监测方法集成到业务系统软件, 最终实现西藏全区的干旱遥感监测业务工作. 通过与传统手工干旱监测方法进行对比, 发现干旱自动监测系统具有速度快、自动化等优点, 具有十分重要的实践意义.  相似文献   

3.
利用自动气象站观测的长波辐射计算得到的地表温度对MODIS地表温度(LST)产品在青藏高原中部连续多年冻土区的精度进行验证, 并利用具有较高空间分辨率的Landsat 5 TM和Landsat 7 ETM+反演的地表温度与MODIS LST产品进行了对比分析. 结果表明: 白天MODIS LST产品的平均绝对误差(MAE)和均方根误差(RMSE)分别约为3.42~4.41 ℃和4.41~5.29 ℃, 夜晚MODIS产品MAE和RMSE分别为2.15~2.90 ℃和3.05~3.78 ℃, 精度高于白天; MODIS LST与TM、ETM+反演的地表温度一致性较好, 相关系数分别达到0.85和0.95. 说明MODIS LST产品在连续多年冻土区的适用性较高, 是研究多年冻土地表热状况的一个非常好的数据源. 而且, 不同空间尺度的遥感数据之间一致性较好, 可考虑将多源遥感数据应用于多年冻土热状况监测研究.  相似文献   

4.
遥感反演的地表温度(Ts)和植被指数(VI)构成的特征空间结合模型分析可以对显热通量、潜热通量及土壤含水量等地表参数进行估算.这种方法比较实用,且不过多地依赖地面观测数据.随着研究的深入,许多学者在Ts/VI特征空间基础上提出了更加丰富的空间变量.基于此,以不同空间变量为标准,分类介绍在Ts/VI特征空间的基础上对地表能量通量及土壤水分等参数的反演.其中包括在Ts/NDVI特征空间基础上提出温度植被干旱指数和条件植被温度指数来监测干旱;利用Ts/albedo特征空间反演蒸发比;用DSTV/VI特征空间反演蒸散量;用地气温差/植被指数特征空间反演蒸散量等.并介绍了Ts/VI特征空间与微波遥感结合反演地表含水量等相关研究的进展情况,最后提出未来研究的发展方向.  相似文献   

5.
干旱灾害是我国主要的自然灾害之一。近年来,连续性、极端干旱灾害时有发生,对我国粮食安全、饮水安全和生态安全造成严重威胁。土壤墒情是旱情监测的重要指标,遥感技术具有观测范围广、实时性强以及成本低廉等优势,可以广泛应用于土壤墒情监测。本文分析了土壤墒情与地表参数NDVI(归一化植被指数)和LJST(地表温度)的关系,建立了基于NDVI和LST、并考虑土壤类型的土壤墒情遥感监测模型。利用该模型,基于MODIS遥感影像和地面实测墒情,对2010年10月到2011年5月山东省旱情进行了动态监测。监测结果显示:山东省的旱情经历了不断加重,再到逐渐缓解。然后又局部加重。最终全部缓解的过程,干旱核心区为鲁南地区,与实际情况一致。  相似文献   

6.
针对龙江流域下游南岸段干旱缺水的自然灾害现象,文章建立了新的基于温度植被干旱指数(TVDI)的遥感监测信息模型,并建立了干旱分级标准.经过反复试验结果表明,该干旱遥感监测模型对于区域性的干旱监测具有较好的实用性,可广泛用于干旱的监测、评估及预报工作.  相似文献   

7.
韩涛  王大为  李丽丽 《冰川冻土》2018,40(3):511-527
我国新型自主的极轨气象卫星风云3号A星(简称FY-3A)上搭载的中分辨率光谱成像仪(MERSI)为大面积雪监测提供了新的遥感数据源。以中国西北祁连山区为例,分析FY-3A/MERSI传感器积雪与其它地物的图谱特征差异,建立了适用于FY-3A/MERSI的归一化差分积雪指数(NDSI),以此为基础,构建了综合利用多光谱判别指标及土地覆盖类型(LULC)定类辅助的积雪判识模型,生成250 m分辨率的日积雪制图产品。模型通过逐步逼近的树状判别结构,去除了易和积雪混淆的部分乔木林、云、云阴影、水体、湖冰、沙(盐)地等地物,并提出应考虑积雪下覆地表特性的影响,调整设定不同LULC类型的积雪判别阈值约束,实时结合区域LULC影像进行积雪的最终判定与优化。对祁连山区2010-2011年积雪季FY-3A/MERSI影像的积雪制图应用结果表明,该资料能够客观精细地反映积雪的空间分布与动态发展过程。同时利用气象台站积雪观测记录及Terra/MODIS积雪判识结果进行对比验证,结果表明基于FY-3A/MERSI建立的积雪判识模型具有较高的精度和稳定性,特别是提高了云雪区分的效能。  相似文献   

8.
土壤水分与干旱遥感研究的进展与趋势   总被引:47,自引:2,他引:47  
对土壤水分和干旱遥感监测的国内外发展情况进行了回顾,依据土壤水分和干旱遥感监测的原理,围绕着可见光与近红外、热红外、微波光谱波段的使用,分别以土壤和植被为观测对象,对国内外土壤水分与干旱遥感现状与发展趋势进行讨论。重点对微波遥感土壤湿度的算法发展和研究趋势进行了较详细的论述。在总结国内外土壤水分遥感监测研究实验中所用过的方法与原理的基础上,对目前遥感监测土壤水分研究领域的重点、难点和未来的发展方向进行了评述。土壤水分遥感监测是一个复杂的间接过程,波段及变量选择、传感器的性能等因素对土壤水分监测是至关重要的,土壤的各种理化性状、地形的分异作用以及气候变化和人为的土壤管理措施对土壤水分均有不同的影响,地表特征与土壤水分也存在着一定的相关性。改进的热惯量法和作物缺水指数法是当前土壤水分遥感监测中较为成熟的方法。GIS技术的广泛应用、土壤水分遥感监测模型的优化。微波遥感的应用将是该领域的重点研究方向。  相似文献   

9.
周纪  李京  张立新 《冰川冻土》2009,31(2):239-246
地表温度遥感反演算法的榆验与评价是确保算法能够有效应用的前提.选取2008年3月覆盖我国西北黑河流域上游地区的Tcrra/Aqua MODIS影像,利用卫星过境时地面样方的实测地表温度数据对MOD/MYD11A1产品及4种常用的分裂窗算法进行了验证.同时,利用典型大气探空数据构建了用十算法检验的模拟数据集.利用实测地表温度数据的验证结果表明,MOD/MYD11A1产品及Mao等提出的实用性分裂窗算法精度较高,均方根误差分别为1.1 K、0.9 K.基丁地表温度的模拟数据集验让结果表明,在黑河上游寒旱环境下,Mao 2005算法的均方根误差控制在0.8 K以内.由于研究区大人气水汽含量较低,传感器观测天顶角对于地表温度反演精度影响较小.  相似文献   

10.
卫星遥感信息系统在林火及干旱监测中的应用   总被引:1,自引:0,他引:1  
周颖 《贵州地质》2001,18(2):112-115
根据几种投影方式的特点,再结合贵州地理位置,采用麦卡托投影方式来进行火灾检测,火灾自动监测系统能迅速找出火点位置并计算火面积,监测范围广,时效较常规地面监测手段提前1-3天。旱情的遥感监测基于土壤水分和植被状况,对于裸地卫星遥感重点是土壤的含水量,对于有植被覆盖的区域,遥感的重点是植被指数的变化以及植被冠层蒸腾状况的变化。从贵州的实际情况和地表条件,分别选用植被指数法、第四通道遥感下垫面温度法、植被供水指数法及热惯量方法来进行干旱监测。通过实例认为,气象卫星确实能大范围地对干旱进行宏观监测,其监测面积精度高,不仅可以迅速准确确定受灾面积,而且还可精确到县,在实际运用中可操作性很强,能为政府部门抓好防旱抗旱提供详细的数据参考,做好灾情预报和指导抗灾救灾工作服务。  相似文献   

11.
This paper has developed a general Ts-NDVI triangle space with vegetation index time-series data from AVHRR and MODIS to monitor soil moisture in the Mongolian Plateau during 1981–2012, and studied the spatio-temporal variations of drought based on the temperature vegetation dryness index (TVDI). The results indicated that (1) the developed general Ts-NDVI space extracted from the AVHRR and MODIS remote sensing data would be an effective method to monitor regional drought, moreover, it would be more meaningful if the single time Ts-NDVI space showed an unstable condition; (2) the inverted TVDI was expected to reflect the water deficit in the study area. It was found to be in close negative agreement with precipitation and 10 cm soil moisture; (3) in the Mongolian Plateau, TVDI presented a zonal distribution with changes in land use/land cover types, vegetation cover and latitude. The soil moisture is low in bare land, construction land and grassland. During 1981–2012, drought was widely spread throughout the plateau, and aridification was obvious in the study period. Vegetation degradation, overgrazing, and climate warming could be considered as the main reasons.  相似文献   

12.
Typhoons are one of the major natural hazards occurring frequently in Shanghai. The comprehensive assessment of drought relief by typhoon has become a major concern of scientists and government agencies in Shanghai, China. In this article, with the support of remote sensing data and the available data from local meteorological stations, the regional drought relief was investigated and the change of drought intensity was quantified by the typhoon “Saomai” between 5 and 8 August 2005. The precipitation anomaly calculated on the basis of recorded rainfall was adopted to analyze drought condition changes before and after the typhoon. Then, vegetation supply water index (VSWI) and normalized difference vegetation index (NDVI) were used to monitor the drought relief due to the consecutive shortage of summer rainfall. Impact of typhoon on drought was compared by VSWI before and after typhoon Saomei. The results showed that the typhoon alleviated the drought of the vegetation by more than 70 %, based on the spatial and temporal distribution of precipitation, the ground temperature, relative humidity, high temperature, NDVI from Shanghai area. The result shows that MODIS remote sensing data are a useful quantitative monitoring tool in drought relief by local typhoons. More strategies are necessary to be adopted for prevention and mitigation of meteorological disaster in Shanghai in recent years.  相似文献   

13.
MODIS在水文水资源中的应用与展望   总被引:22,自引:1,他引:21       下载免费PDF全文
MODIS是新一代遥感技术,其遥测数据与其他单独的遥感平台(如NOAA和Land Sat)所获得的数据相比,具有免费、较高时间分辨率(0.5d)、空间分辨率(250m)和光谱分辨率(波谱范围0.4~14μm,36个光谱通道)等优势和特点.详细介绍了国内外的研究现状,着重对MODIS在洪水过程和洪灾范围实时动态监测、冰川和积雪、降水、植被、土壤水分、蒸发、水文模型、水质等方面的应用和研究进展进行了评述,指出MODIS在水文水资源中具有广阔的应用前景.  相似文献   

14.
藏北高原土壤湿度时空变化分析   总被引:5,自引:0,他引:5       下载免费PDF全文
使用2009年DOY (Day of Year) 145~288时段与2001~2010年夏季(DOY 161~240时段)的Terra/MODIS 16 d合成的植被指数产品数据MOD13 A2和8 d合成的地表温度(Land Surface Temperature,TLS)产品数据MOD11 A2,构建TLS~IEV(Enhanced Vegetation Index,IEV)特征空间,从而得到了条件温度植被干旱指数(Temperature Vegetation Drought Index,ITVD)反映的藏北土壤湿度空间分布。对藏北高原2009年植被生长季内土壤湿度的季节性变化及2001~2010年夏季土壤湿度的年际变化特征进行分析,研究结论表明:随着植被盖度的增大,干、湿边斜率逐渐变小,植被对环境温度的变化具有缓冲效应;藏北高原土壤湿度的季节性变化明显,主要受温度、降水、植被覆盖和冻土过程等季节性变化的影响;近10年研究区内土壤湿度有轻微的旱化趋势,但不同气候区内的年际变化表现不一致;气温表现不同程度的显著升温趋势,部分站点的降水有不显著减少趋势,其它站点降水表现为年际波动,而区域统计的ITVD值年际波动与站点气温的变化大体一致。  相似文献   

15.
基于遥感技术的贵州春季土壤水分空间分异研究   总被引:1,自引:0,他引:1  
田雷  杨胜天  王玉娟 《中国岩溶》2007,26(2):111-118
通过对已建立的土壤水分运动模拟模型的校正,使之适合于喀斯特环境的土壤水分运移,并以遥感和GIS技术为依托,反演出贵州省大尺度下的各陆表参数(如: 地表温度、NDVI、气温、日照时数等) ,进而模拟出贵州省土壤水分运动转化过程,定量描述了喀斯特地区土壤水分变化,并对影响土壤水分变化的相关因子进行相关性分析。结果表明: 贵州春季土壤水分含量均值为0. 23mm /mm,次降雨通过蒸散发和下渗等作用在10天左右的时间之后,土壤水分含量及其增长率接近稳定状态,平均土壤水分变化率为1. 16% ;降水量对土壤水分变化的影响程度较其它的气象因子大,与土壤水分的净相关系数较大,是土壤水分变化的最主要的净影响因子;春季贵州省土壤水分空间分布总体上呈现东南、南部较高,而中部,北部、西部地区较低的分布特征,主要原因之一是中北部地区主要以黄壤或水稻土为主,土壤孔隙较大,漏水较为严重,土壤保水性不强。   相似文献   

16.
Designing of the perpendicular drought index   总被引:15,自引:0,他引:15  
In this paper, a simple, effective drought monitoring method is developed using two dimensional spectral space obtained from reflectance of near-infrared (NIR) and Red wavelengths. First, NIR–Red reflectance space is established using atmospheric and geometric corrected ETM+ data, which is manifested by a triangle shape and in which different surface targets possess certain spatial distribution rules. Second, perpendicular drought index (PDI) is developed on the basis of spatial characteristics of moisture distribution in NIR–Red space, as well as the relationships between PDI and soil moisture is examined. Validation work includes: comparison of PDI with in-situ drought index obtained from field measured data in the study area which includes bulk soil moisture content at different soil depths, field moisture capacity and wilting coefficient, etc.; and comparison of PDI with other recognized drought monitoring methods such as LST/NDVI and vegetation temperature condition index (VTCI). It is evident from the results that graph of PDI of field measured plots demonstrates very similar trends with ground truth drought data, LST/NDVI and VTCI. PDI is highly correlated with in-situ drought values calculated from 0 to 20 cm mean soil moisture with correlation coefficients of R 2 = 0.49 (r = 0.75). This paper concludes that PDI has a potential in remote estimation of drought phenomenon as a simple, effective drought monitoring index.  相似文献   

17.
Mikaili  Omidreza  Rahimzadegan  Majid 《Natural Hazards》2022,111(3):2511-2529

As drought occurs in different climates, assessment of drought impacts on parameters such as vegetation cover is of utmost importance. Satellite remote sensing images with various spectral and spatial resolutions represent information about different land covers such as vegetation cover. Hence, the purpose of this study was to investigate the performance of satellite vegetation indices to monitor the agricultural drought on a local scale. In this regard, satellite images including Moderate Resolution Imaging Spectroradiometer (MODIS) and Advanced Very High Resolution Radiometer (AVHRR) data were used to evaluate vegetation cover and their gradual changes effects on agricultural drought. Fars province in Iran with relatively low precipitation values was selected as the study area. Modified Perpendicular Drought Index (MPDI), MPDI1, Vegetation Condition Index (VCI), Normalized Difference Vegetation Index Anomalies (NDVIA), and Standardized Vegetation Index (SVI), were evaluated to select the remote sensing based index with the best performance in drought monitoring. The performance of such indices were investigated during 13 years (2000–2013) for MODIS and 29 years (1985–2013) for AVHRR. To assess the efficiency of the satellite indices in drought investigation, Standardized Precipitation Index (SPI) data of five selected stations were used for 3, 6, and 9 month periods on August. The results showed that NDVI-based vegetation indices had the highest correlation with SPI in cold climate and long-term timescale (6 and 9 month). The highest correlation values between remote sensing based indices and SPI were acquired, respectively, in 9-month and 6-month time-scales, with the values of 43.5% and 40%. Moreover, VCI showed the highest capability for agricultural drought investigating in different climate regions of the study area. Overall, the results proved that NDVI-based indices can be used for drought monitoring and assessment in a long-term timescale on a local time-scale.

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