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1.
一种新的卫星热红外遥感信息数据源:EOS/MODIS数据   总被引:4,自引:0,他引:4  
概略介绍了四川省地震局近年来所开展的卫星遥感热红外辐射信息用于地震监测预报的研究工作及其进展;对目前地震系统卫星遥感热红外辐射信息研究工作所使用的数据源进行了比较;着重介绍了一种新的卫星热红外遥感信息数据源——搭载于美国地球观测系统(EOS)的Terra和Aqua极轨卫星上的中分辨率成像光谱仪(MODIS)这一唯一进行直接广播的对地观测仪器的基本参数及数据特性。对MODIS数据与目前正在使用的AVHRR数据进行对比分析后认为,EOS/MODIS数据的产生,将进一步推动利用卫星热红外辐射资料研究强震前的热异常场的工作,并可望在我国地震监测预报实践中得到应用。  相似文献   

2.
<正>卫星红外遥感技术用于地震监测已有近30年的历史,目前研究人员所用的卫星数据源主要来自于NOAA/AVHRR、EOS/MODIS、FY静止系列气象卫星等红外传感器观测获得的红外数据。其中AVHRR、MODIS红外数据的空间分辨率为1km,FY静止卫星的红外数据分辨率为5 km。此外,在我国地震预报部门还使用NOAA长波辐射(OLR)数据产品开展短临监测,该数据为利用卫星远红外波段反演的宽波段数  相似文献   

3.
内蒙古乌梁素海“黄苔”暴发卫星遥感动态监测   总被引:6,自引:3,他引:3  
郑伟  韩秀珍  刘诚  李云鹏 《湖泊科学》2010,22(3):321-326
通过综合分析"黄苔"、芦苇、明水体和陆地等地物在EOS/MODIS图像上不同波段的光谱特征,提出了利用EOS/MODIS可见光、近红外波段数据提取"黄苔"信息的方法.结合乌梁素海"黄苔"实地考察资料和高空间分辨率的中巴资源卫星CBERS/CCD数据对MODIS数据监测"黄苔"的结果进行了比对验证.研究结果表明,本文提出的方法可以对"黄苔"进行有效的监测.同时提出了简单可行的去除程辐射影响的大气校正方法,利用MODIS 2008年5-10月的数据对内蒙古乌梁素海的"黄苔"灾情进行了动态监测,获得了乌梁素海"黄苔"灾情发生发展的特征信息,乌梁素海在2008年5月初开始出现"黄苔",6-7月份发生大面积"黄苔"暴发,进入8月以后"黄苔"开始逐渐消退,10月份基本消失,并初步分析了"黄苔"暴发的原因.  相似文献   

4.
卫星遥感能够提供(准)实时地面信息,在地震研究中的应用越来越广泛.MODIS是搭载在Terra和Aqua两颗卫星上的重要的“图谱合一”光学遥感观测仪器.由于MODIS数据具有多频段、高分辨率、高时效性、应用广泛等特点,使得MODIS数据对地球科学的综合研究和对陆表、生物圈、固态地球、大气和海洋的长期观测有着重要意义,在自然灾害的监测和分析研究领域也有着广泛的应用.  相似文献   

5.
一种基于指数函数的遥感水体信息提取方法   总被引:1,自引:0,他引:1  
MODIS数据具有高时相分辨率、高光谱分辨率和中等地面分辨率的特征,利用MODIS数据来监测和提取旱情严重地区的水体信息已经成为一个重要的研究方向.本文利用各类地物在MODIS各个波段上的波谱特征差异性进行水体提取,但与以往水体信息提取方法有创新之处在于:本文借助于非线性的指数函数对低反射的水体的反射率进行了拉伸而对高...  相似文献   

6.
卫星热红外遥感资料在地震预报中的应用研究   总被引:9,自引:3,他引:9       下载免费PDF全文
利用NOAA—AVHRR数据通过Becker & Li地温计算模型反演,得到有关地震发生前后每日的地表温度分布图像,然后进行逐日的地表温度分布图像以及震源区地表温度平均值日变时序曲线分析。结果表明震前出现了较明显的热红外地震前兆异常。最后指出,从NOAA—AVHRR数据中利用分裂窗技术反演陆地表面温度结果容易受到云层的干扰,但是更高空间分辨率和光谱分辨率的EOS/MODIS数据的产生以及由于EOS/AMSU能够透过云层探测到地表亮温,必将使卫星遥感热红外信息在地震监测预报中的应用范围及深度上得以拓展。  相似文献   

7.
MODIS影像的大气校正及在太湖蓝藻监测中的应用   总被引:7,自引:0,他引:7  
MODIS 数据有免费、波段丰富、时间分辨率高等优点,是进行太湖蓝藻监测的重要数据源,由于MODIS传感器接收的是地物反射太阳辐射的信号,太阳辐射与地球大气的相互作用会引起传感器接收到的信号失真,为了提高利用MODIS数据监测太湖蓝藻的精度,必须对其进行大气校正.本文介绍了FIAASH大气校正模型的基本原理,并对2007年4月25日MODIS数据的前七个波段进行试验,对比分析了影像大气校正前后的NDVI值以检测大气校正的效果;分析表明,大气校正前后NDVI的变化趋势基本上相同,但大气校正后的NDVI动态范围更大,校正后NDVI的平均值和标准差增大,大气校正在一定程度上有效地降低了大气对遥感影像的影响,达到了增强信息的目的;最后,利用大气校正获取的地表真实反射率数据的第二波段与第一波段的比值,运用阈值法提取蓝藻信息,经试验当阈值为1.9时提取出来的蓝藻分布图基本上与实际相符.利用MODIS影像可以快速、及时地监测蓝藻爆发的位置及爆发程度.  相似文献   

8.
基于HJ-CCD和MODIS的吉林省中西部湖泊透明度反演对比   总被引:2,自引:0,他引:2  
水体透明度能够反映光在水体中的穿透程度,影响水生植被及以光为依赖条件的水生生物的分布,获取透明度的传统方法是采用透明度盘进行测量,但也可以通过遥感方法获得.环境减灾卫星是专门用于环境与灾害监测预报的小卫星星座,影像覆盖范围广,空间、时相分辨率较高,可以为水环境遥感提供较好的数据源.MODIS数据在近岸水体和内陆大型湖泊水环境监测中也有广泛应用,它的时相分辨率也很高,但空间分辨率低.利用HJ-1A卫星CCD数据和MODIS日反射率产品(MOD09GA),以2012年9月吉林省石头口门水库、二龙湖、查干湖、月亮泡等地的实测透明度为基础(实测点数74个,最小值为0.134 m,最大值为1.410 m,平均值为0.488 m),根据灰色关联度选取构建模型的波段组合,建立水体透明度反演模型.HJ1A-CCD数据与MOD09GA数据建立的模型R2分别为0.639和0.894,均方根误差(RMSE)分别为0.248和0.135,模型验证的平均相对误差(MRE)分别为17.1%和9.5%,RMSE分别为0.207和0.089.MODIS数据以其较高的辐射分辨率使模型精度较高,但是HJ数据在应用于透明度小于1 m的水体时精度也较高(MRE=13.5%,RMSE=0.066).HJ-CCD数据在空间分辨率上的优势使其能够获得透明度空间分布的细节信息.比较两者反演得到的湖泊平均透明度,结果较为一致.  相似文献   

9.
卫星遥感数据评估黄土高原陆面干湿程度研究   总被引:1,自引:1,他引:0       下载免费PDF全文
康悦  文军  张堂堂  田辉  陈昊 《地球物理学报》2014,57(8):2473-2483
卫星遥感数据具有估算时空尺度上地表参量的优势,在陆地环境状况评估和监测等方面有很大的应用潜力.本文利用美国地球观测系统卫星搭载中等分辨率成像光谱仪(EOS/MODIS)在黄土高原2002-2010年期间获取的每16天归一化植被指数(NDVI)和每日地表温度(LST)数据,分析了黄土高原地区LST-NDVI空间的基本特征.结果发现:当研究区域足够大且遥感数据时间序列足够长时,LST-NDVI空间中(NDVI,LST)散点并非呈三角形或梯形分布.为了能够利用EOS/MODIS的NDVI和LST数据正确地评估陆面的干湿状况,本文给出了利用数据集合法确定LST-NDVI空间中干边和湿边的数值,即在LST-NDVI空间中,利用NDVI等值区间内LST最大值和最小值的集合代表干边和湿边的数值,并进一步证明了在LST-NDVI空间中干边和湿边数值并非呈线性关系.在分析LST-NDVI空间特征的基础上,通过构建地表温度-植被干旱指数(TVDI),探讨其在评估黄土高原地区陆面的干湿状况的应用潜力.结果表明:由TVDI距平表征的陆面的干湿程度与局地降水距平有很好的关联性,二者在时空分布上有较好的对应关系.在我国陇东黄土高原塬区,TDVI数值与地面观测的表层土壤湿度有很好的相关性,相关系数在0.67以上,并通过显著性为1%的检验.由此说明:如果合理选取干边和湿边的数值,TDVI可应用于区域陆面干湿程度的客观评估.  相似文献   

10.
使用地球观测系统的中分辨率成像光谱仪(EOS.MODIS)提供的归一化植被指数(NDVI)产品估算植被覆盖度和航天飞机雷达地形测绘任务(SRTM)制成的数字高程模型(DEM)数据遥感产品替换WRF模式默认的植被覆盖度和地形高度,并且利用WRF模式及其先进的三维变分同化系统(WRF.3DVar)循环同化东北半干旱区自动气象站近地面气象要素,对东北半干旱区的温度场、湿度场、风场和能量场的结构及其日变化特征进行了较为细致的模拟研究.通过4组数值模拟试验分别探讨了同化气象要素与改变模式地表参数引起的不同下垫面潜热、感热的分配关系和降水、土壤湿度变化弓f起的地表能量通量模拟效果,并利用通榆站、奈曼站、锦州站、和密云站2009年6-8月的通量观测资料与模拟结果对比检验.结果表明,WRF模式能够较好地模拟出东北半干旱区夏季的近地面温度、风向、净辐射、感热和潜热等要素的变化特征及日变化规律.同化试验(Case2)模拟的近地面气温、相对湿度、风速相比控制性试验(Case1)有所改善;陆面参数试验(Case3)和集合试验(Case4)改善了感热和地表热通量的模拟.WRF模式能较好地模拟出下垫面土壤湿度随时间变化的规律,集合试验(Case4)土壤湿度模拟结果与4个通量站观测值相比无太大差别,但降水的模拟有待改善.本研究利用卫星遥感资料改善模式下垫面陆面参数,利用气象资料同化改善近地面大气要素模拟精度,这是将各种不同空间和时间尺度的多源数据与数值模拟融合的有益尝试.此研究生成的东北地区资料同化数据集可用于气候变化、干旱监测等方面,对深入了解半干旱区气候的形成和维持机理具有重要的意义.  相似文献   

11.
太湖是我国典型的富营养化湖泊,水温是影响太湖藻类生长的重要环境因子之一,我国环境减灾卫星HJ-1B搭载的红外多光谱相机IRS对太湖水温动态遥感监测具有较大的性能优势.利用6景过境太湖的IRS热红外遥感影像,分别采用单通道普适性算法、辐射传输模型法和单窗算法反演太湖水温,并与实测水温和同期的TERRA/MODIS温度产品进行对比.结果表明,普适性单通道算法反演水温偏高,而辐射传输模型法和单窗算法则偏低;3种算法反演水温的均方根误差在1.001 K以内,单窗算法反演精度最高,其次是辐射传输模型法,再次为普适性单通道算法,而同期MODIS温度产品的均方根误差为1.507 K.3种算法从IRS热红外数据反演的水温直方图均呈正峰态、尖峰状态分布,反演结果能真实地反映太湖水温的空间分布特征.本研究对只有单个热红外通道的卫星传感器开展内陆水体水温遥感监测具有一定的参考意义.  相似文献   

12.
AMSR-E and MODIS are two EOS (Earth Observing System) instruments on board the Aqua satellite. A regression analysis between the brightness of all AMSR-E bands and the MODIS land surface tem-perature product indicated that the 89 GHz vertical polarization is the best single band to retrieve land surface temperature. According to simulation analysis with AIEM,the difference of different frequen-cies can eliminate the influence of water in soil and atmosphere,and also the surface roughness partly. The analysis results indicate that the radiation mechanism of surface covered snow is different from others. In order to retrieve land surface temperature more accurately,the land surface should be at least classified into three types:water covered surface,snow covered surface,and non-water and non-snow covered land surface. In order to improve the practicality and accuracy of the algorithm,we built different equations for different ranges of temperature. The average land surface temperature er-ror is about 2―3℃ relative to the MODIS LST product.  相似文献   

13.
Results of freeze-thaw simulations on three large blocks of quartz-micaschist are presented. Three types of water to ice phase change were identified from temperature and ultrasonic measurements. It is suggested that the type of phase change results from a particular combination of rock moisture content, solute concentration, freeze amplitude, and rate of fall of temperature. The temperature at which ice thawed inside the rock (?0.7 to ?1.9°C) was also found, and this indicates the possibility of freeze-thaw effects without positive temperatures. Approximately 80 per cent of the water that will freeze under natural conditions, in the Maritime Antarctic environment under study, appears to have done so by ?6°.  相似文献   

14.
The method has been developed to evaluate water and heat balance components for vegetation covered area of regional scale based on the refined physical-mathematical model of vertical water and heat exchange between land surface and atmosphere (Land Surface Model, LSM) for vegetation season adapted to satellite information on land surface and meteorological conditions. The LSM is accommodated for utilizing satellite-derived estimates of vegetation and meteorological characteristics as model parameters and input variables. Estimates of these characteristics presented as distributions of their values over the study area have been obtained from AVHRR/NOAA, MODIS/EOS Terra and Aqua, SEVIRI/Meteosat-9, -10 data. To build such estimates methods and technologies have been developed and refined using results of thematic processing measurement data from these sensors. Among them the original Multi Threshold Method (MTM) has been developed and tested to calculate daily precipitation sums using rainfall intensity estimates retrieved from AVHRR and SEVIRI data with subsequent replacement of ground-measured rainfall amounts by these daily rainfalls. All technologies have been adapted to the study area with square of 227300 km2 being the part of the Central Black Earth Region of European Russia. Developed earlier procedures of utilizing satellitederived estimates of vegetation and meteorological characteristics (including precipitation) in the model have been refined and verified. Final result of modeling is the fields of soil water content, evapotranspiration and other water and heat balance components of the region under study for years 2012–2014 vegetation seasons.  相似文献   

15.
太湖蓝藻爆发与水温的关系的MODIS遥感   总被引:15,自引:4,他引:11  
利用MODIS高光谱遥感数据动态监测太湖地区蓝藻水华发展过程,并结合水温环境因子,探讨蓝藻爆发的环境条件.首先,通过简单的比值植被指数,实现蓝藻生物量的遥感估算;根据六期遥感估算结果,监测太湖蓝藻动态发展过程.然后,利用MODIS热红外波段(31和32),采用分裂窗算法,同步反演出的太湖表面水体温度,探讨蓝藻爆发的水温条件,及蓝藻生长与水-温度之间的关系.研究结果表明,在水体富营养化前提下,水体温度是影响蓝藻生长的重要环境因子;合适的水体温度(24-30℃)是蓝藻爆发的必要条件;大于30℃的高温,对蓝藻的生长有明显的抑制作用.  相似文献   

16.
It is of major scientific interests to determine the parameters of momentum, heat and vapor exchange in the planetary boundary layer in order to study the effects of ocean-ice-atmosphere interactions and their feedback mechanisms on global climate[1]. Lin…  相似文献   

17.
Groundwater interacts with surface water features nearly in all types of landscapes. Understanding these interactions has practical consequences on the quantity and quality of water in either system, because the depletion or contamination of one of the systems will eventually affect the other one. Many studies have shown that the use of heat as natural tracer in conjunction with water level measurements is an effective method for estimating water flow (fluxes) between groundwater and surface water. A number of studies have explored the effects of spatial and temporal variability of groundwater–surface water flux exchanges using temperature and water level measurements; however, the effect of temporal resolution of water level and temperature data on estimating flux remains unexplored. Therefore, this study investigated the effect of temporal resolution of input data on temporal variation of groundwater–surface water flux exchanges. To this end, we calibrated a variably saturated two‐dimensional groundwater flow and heat transport model (VS2DH) at hourly and daily time scales using temperatures measured at multiple depths below the riverbed of the Zenne River, located at a well‐known Belgian brownfield site. Results of the study showed that the computed water flux through the streambed ranged between ?32 mm/day and +25 mm/day using the hourly model and from ?10 mm/day to ?37 mm/day using the daily model. The hourly model resulted in detecting reversal of flow direction inducing short‐term surface water flow into the streambed. However, such events were not captured if daily temperature and water level measurements were used as input. These findings have important implications for understanding contaminant mass flux and their attenuation in the mixing zone of groundwater and surface water. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

18.
三峡工程调节作用对洞庭湖水面面积(2000-2010年)的影响   总被引:3,自引:3,他引:0  
以洞庭湖为研究对象,以11年(2000-2010年)Terra/MODIS 16 d最大值合成的植被指数数据产品集MOD13Q1和同期城陵矶水文监测站的水位数据为主要数据源,通过对NDVINIR分别设定阈值的方法,实现了洞庭湖水面面积的综合提取,分析了三峡工程建设背景下,洞庭湖水面面积的年际变化特征和年内变化规律,再结合城陵矶水位数据,对水位与水面面积之间的定量关系进行了深入分析.研究结果表明:三峡工程的运行,很大程度上控制着洞庭湖的入湖水量,对洞庭湖防汛工作有利;在气候变化、三峡水库的共同影响下,洞庭湖区水面面积整体上呈减少趋势;水面面积与水位的拟合结果显示两者具有良好的相关性,其中2000-2003年两者的确定性系数达到0.975.  相似文献   

19.
Land surface albedo plays an important role in the radiation budget and global climate models. NASA's Moderate Resolution Imaging Spectroradiometer (MODIS) provide 16‐day albedo product with 500‐m resolution every 8 days (MCD43A3). Some in‐situ albedo measurements were used as the true surface albedo values to validate the MCD43A3 product. As the 16‐day MODIS albedo retrievals do not include snow observations when there is ephemeral snow on the ground surface in a 16‐day period, comparisons between MCD43A3 and 16 day averages of field data do not agree well. Another reason is that the MODIS cannot detect the snow when the area is covered by clouds. The Advanced Microwave Scanning Radiometer for EOS (AMSR‐E) data are not affected by weather conditions and are a good supplement for optical remote sensing in cloudy weather. When the surface is covered by ephemeral snow, the AMSR‐E data can be used as the additional information to retrieve the snow albedo. In this study, we developed an improved method by using the MODIS products and the AMSR‐E snow water equivalent (SWE) product to improve the MCD43A3 short‐time snow‐covered albedo estimation. The MODIS daily snow products MOD10A1 and MYD10A1 both provide snow and cloud information from observations. In our study region, we updated the MODIS daily snow product by combining MOD10A1 and MYD10A1. Then, the product was combined with the AMSR‐E SWE product to generate new daily snow‐cover and SWE products at a spatial resolution of 500 m. New SWE datasets were integrated into the Noah Land Surface Model snow model to calculate the albedo above a snow surface, and these values were then utilized to improve the MODIS 16‐day albedo product. After comparison of the results with in‐situ albedo measurements, we found that the new corrected 16‐day albedo can show the albedo changes during the short snowfall season. For example, from January 25 to March 14, 2007 at the BJ site, the albedo retrieved from snow‐free observations does not indicate the albedo changes affected by snow; the improved albedo conforms well to the in‐situ measurements. The correlation coefficient of the original MODIS albedo and the in‐situ albedo is 0.42 during the ephemeral snow season, but the correlation coefficient of the improved MODIS albedo and the in‐situ albedo is 0.64. It is concluded that the new method is capable of capturing the snow information from AMSR‐E SWE to improve the short‐time snow‐covered albedo estimation. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

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