期刊文献+
共找到10篇文章
< 1 >
每页显示 20 50 100
基于不同土地覆盖类型NDSI阈值优化下的青藏高原积雪判别 被引量:12
1
作者 高扬 郝晓华 +6 位作者 和栋材 黄广辉 王建 赵宏宇 魏亚瑞 邵东航 王卫国 《冰川冻土》 CSCD 北大核心 2019年第5期1162-1172,共11页
美国国家雪冰数据中心(NSIDC)发布的MODIS第6版本逐日积雪范围产品(V6)仅提供了归一化积雪指数(NDSI),而用户往往关心的是积雪范围或积雪覆盖率。NSIDC推荐全球积雪范围最佳的NDSI阈值为0.4,但是青藏高原地形复杂,积雪斑块化特征明显,... 美国国家雪冰数据中心(NSIDC)发布的MODIS第6版本逐日积雪范围产品(V6)仅提供了归一化积雪指数(NDSI),而用户往往关心的是积雪范围或积雪覆盖率。NSIDC推荐全球积雪范围最佳的NDSI阈值为0.4,但是青藏高原地形复杂,积雪斑块化特征明显,单一的NDSI阈值并不能精确地判识不同下垫面上的积雪。不同的土地覆盖类型可能影响积雪判别的NDSI阈值。以青藏高原为研究对象,基于高分辨率卫星Landsat-5 TM数据,获取了青藏高原不同土地覆盖类型下判识积雪的最优NDSI阈值。结果表明,在草地和稀疏植被地表类型下,最优NDSI阈值分别为0.33和0.40;在其他下垫面类型下,最优NDSI阈值为0.47。以Landsat 8 OLI数据为"真值"对该NDSI阈值确定的积雪范围进行了精度检验。结果表明,采用新的NDSI阈值获取的MOD10A1 V6积雪范围产品的总体精度OA、错分误差OE和漏分误差UE分别为87.88%、5.20%和6.87%。而采用传统的0.4阈值时,其OA、OE和UE分别为87.36%、3.98%和8.60%。这表明考虑不同土地覆盖类型下的NDSI阈值优化可以有效地提高青藏高原积雪判别精度,特别是对占比面积较大的草地区域,通过NDSI阈值优化可以更加准确地识别积雪范围。 展开更多
关键词 MOD10A1 V6积雪范围产品 青藏高原 归一化积雪指数(ndsi) 土地覆盖类型 LANDSAT
下载PDF
Snow Cover Variation and Streamflow Simulation in a Snow-fed River Basin of the Northwest Himalaya 被引量:5
2
作者 Vaibhav SHARMA V.D.MISHRA P.K.JOSHI 《Journal of Mountain Science》 SCIE CSCD 2012年第6期853-868,共16页
Snowmelt is an important component of any snow-fed river system.The Jhelum River is one such transnational mountain river flowing through India and Pakistan.The basin is minimally glacierized and its discharge is larg... Snowmelt is an important component of any snow-fed river system.The Jhelum River is one such transnational mountain river flowing through India and Pakistan.The basin is minimally glacierized and its discharge is largely governed by seasonal snow cover and snowmelt.Therefore,accurate estimation of seasonal snow cover dynamics and snowmeltinduced runoff is important for sustainable water resource management in the region.The present study looks into spatio-temporal variations of snow cover for past decade and stream flow simulation in the Jhelum River basin.Snow cover extent(SCE) was estimated using MODIS(Moderate Resolution Imaging Spectrometer) sensor imageries.Normalized Difference Snow Index(NDSI) algorithm was used to generate multi-temporal time series snow cover maps.The results indicate large variation in snow cover distribution pattern and decreasing trend in different sub-basins of the Jhelum River.The relationship between SCE-temperature,SCE-discharge and discharge-precipitation was analyzed for different seasons and shows strong correlation.For streamflow simulation of the entire Jhelum basin Snow melt Runoff Model(SRM) used.A good correlation was observed between simulated stream flow and in-situ discharge.The monthly discharge contribution from different sub-basins to the total discharge of the Jhelum River was estimated using a modified version of runoff model based on temperature-index approach developed for small watersheds.Stream power - an indicator of the erosive capability of streams was also calculated for different sub-basins. 展开更多
关键词 snow cover extent(SCE) Streamflow snow Melt Runoff Model(SRM) Normalized Difference snow indexndsi Jhelum basin Moderate Resolution Imaging Spectrometer(MODIS)
下载PDF
Uncertainties of snow cover extraction caused by the nature of topography and underlying surface 被引量:2
3
作者 Jun ZHAO YinFang SHI +1 位作者 YongSheng HUANG JieWen FU 《Journal of Arid Land》 SCIE CSCD 2015年第3期285-295,共11页
Manas River,the largest inland river to the north of the Tianshan Mountains,provides important water resources for human production and living.The seasonal snow cover and snowmelt play essential roles in the regulatio... Manas River,the largest inland river to the north of the Tianshan Mountains,provides important water resources for human production and living.The seasonal snow cover and snowmelt play essential roles in the regulation of spring runoff in the Manas River Basin(MRB).Snow cover is one of the most significant input parameters for obtaining accurate simulations and predictions of spring runoff.Therefore,it is especially important to extract snow-covered area correctly in the MRB.In this study,we qualitatively and quantitatively analyzed the uncertainties of snow cover extraction caused by the terrain factors and land cover types using TM and DEM data,along with the Per(the ratio of the difference between snow-covered area extracted by the Normalized Difference Snow Index(NDSI) method and visual interpretation method to the actual snow-covered area) and roughness.The results indicated that the difference of snow-covered area extracted by the two methods was primarily reflected in the snow boundary and shadowy areas.The value of Per varied significantly in different elevation zones.That is,the value generally presented a normal distribution with the increase of elevation.The peak value of Per occurred in the elevation zone of 3,700–4,200 m.Aspects caused the uncertainties of snow cover extraction with the order of sunny slope〉semi-shady and semi-sunny slope〉shady slope,due to the differences in solar radiation received by each aspect.Regarding the influences of various land cover types on snow cover extraction in the study area,bare rock was more influential on snow cover extraction than grassland.Moreover,shrub had the weakest impact on snow cover extraction. 展开更多
关键词 Landsat TM Normalized Difference snow indexndsi snow cover uncertainty Manas River Basin
下载PDF
Spatiotemporal variation of surface albedo and its influencing factors in northern Xinjiang, China 被引量:1
4
作者 YUAN Shuai LIU Yongqiang +1 位作者 QIN Yan ZHANG Kun 《Journal of Arid Land》 SCIE CSCD 2023年第11期1315-1339,共25页
Surface albedo is a quantitative indicator for land surface processes and climate modeling,and plays an important role in surface radiation balance and climate change.In this study,by means of the MCD43A3 surface albe... Surface albedo is a quantitative indicator for land surface processes and climate modeling,and plays an important role in surface radiation balance and climate change.In this study,by means of the MCD43A3 surface albedo product developed on the basis of Moderate Resolution Imaging Spectroradiometer(MODIS),we analyzed the spatiotemporal variation,persistence status,land cover type differences,and annual and seasonal differences of surface albedo,as well as the relationship between surface albedo and various influencing factors(including Normalized Difference Snow Index(NDSI),precipitation,Normalized Difference Vegetation Index(NDVI),land surface temperature,soil moisture,air temperature,and digital elevation model(DEM))in the north of Xinjiang Uygur Autonomous Region(northern Xinjiang)of Northwest China from 2010 to 2020 based on the unary linear regression,Hurst index,and Pearson's correlation coefficient analyses.Combined with the random forest(RF)model and geographical detector(Geodetector),the importance of the above-mentioned influencing factors as well as their interactions on surface albedo were quantitatively evaluated.The results showed that the seasonal average surface albedo in northern Xinjiang was the highest in winter and the lowest in summer.The annual average surface albedo from 2010 to 2020 was high in the west and north and low in the east and south,showing a weak decreasing trend and a small and stable overall variation.Land cover types had a significant impact on the variation of surface albedo.The annual average surface albedo in most regions of northern Xinjiang was positively correlated with NDSI and precipitation,and negatively correlated with NDVI,land surface temperature,soil moisture,and air temperature.In addition,the correlations between surface albedo and various influencing factors showed significant differences for different land cover types and in different seasons.To be specific,NDSI had the largest influence on surface albedo,followed by precipitation,land surface temperature,and soil moisture;whereas NDVI,air temperature,and DEM showed relatively weak influences.However,the interactions of any two influencing factors on surface albedo were enhanced,especially the interaction of air temperature and DEM.NDVI showed a nonlinear enhancement of influence on surface albedo when interacted with land surface temperature or precipitation,with an explanatory power greater than 92.00%.This study has a guiding significance in correctly understanding the land-atmosphere interactions in northern Xinjiang and improving the regional land-surface process simulation and climate prediction. 展开更多
关键词 surface albedo MCD43A3 Hurst index random forest(RF)model geographical detector(Geodetector) Normalized Difference snow index(ndsi) northern Xinjiang
下载PDF
1953-2016年华山积雪变化特征及其与气温和降水的关系 被引量:11
5
作者 李亚丽 雷向杰 +2 位作者 李茜 余鹏 韩婷 《冰川冻土》 CSCD 北大核心 2020年第3期791-800,共10页
利用华山气象站1953-2016年气象观测资料和1989-2016年Landsat TM卫星遥感影像数据,分析华山积雪变化的基本特征及其与气温、降水和大气环流的关系。结果表明:1953-2016年华山平均积雪日数78.5d,积雪主要出现在每年的10月-次年5月,64a... 利用华山气象站1953-2016年气象观测资料和1989-2016年Landsat TM卫星遥感影像数据,分析华山积雪变化的基本特征及其与气温、降水和大气环流的关系。结果表明:1953-2016年华山平均积雪日数78.5d,积雪主要出现在每年的10月-次年5月,64a来积雪初日推迟,终日提前,初终间日数减少,年度、冬半年、冬季积雪日数分别以8.3d·(10a)^-1、7.6d·(10a)^-1、4.7d·(10a)^-1的减少率显著减少。1981-2016年华山年度最大积雪深度减少趋势不显著,年度累积积雪深度以88.2cm·(10a)^-1的减少率显著减少,一年中积雪日数、最大积雪深度和累积积雪深度的减少(小)趋势均以3月最为显著。1989-2016年华山区域积雪面积、浅雪和深雪面积减少趋势不明显。1953-2016年华山年度、冬半年、冬季平均气温升高,降水量减少。积雪日数与平均气温存在显著的负相关,与降水量存在显著的正相关,气温是影响华山积雪日数的最主要因素。年度、冬半年和冬季积雪日数突变年份与相应时段平均气温突变年份相近。1953-2016年华山冬半年、冬季平均气温和降水量均与大气环流指数相关显著,华山冬半年和冬季积雪日数与同期西藏高原指数、印缅槽强度指数、南极涛动指数和西太平洋副高西伸脊点指数为明显的负相关,与850h Pa东太平洋信风指数、亚洲区极涡面积指数为明显正相关。 展开更多
关键词 华山 积雪 卫星遥感 积雪指数 气候变化 大气环流
下载PDF
MODIS亚像元积雪覆盖率提取方法 被引量:7
6
作者 周强 王世新 +1 位作者 周艺 王丽涛 《中国科学院研究生院学报》 CAS CSCD 北大核心 2009年第3期383-388,共6页
积雪覆盖区域,在全球能量平衡中发挥着重要作用.目前较常用的积雪覆盖率算法主要是利用雪盖率与雪盖指数(NDSI)间的关系建立统一的回归模型,但这种方法在完全雪盖区及稀疏雪盖区的反演精度较差.尝试通过分段建立模型反演雪盖率,并利用E... 积雪覆盖区域,在全球能量平衡中发挥着重要作用.目前较常用的积雪覆盖率算法主要是利用雪盖率与雪盖指数(NDSI)间的关系建立统一的回归模型,但这种方法在完全雪盖区及稀疏雪盖区的反演精度较差.尝试通过分段建立模型反演雪盖率,并利用ETM+数据对模型估算结果进行验证.结果表明,分段模型可以有效提取亚像元尺度的信息,并且对NDSI高值区的雪盖率反演有一定的改善. 展开更多
关键词 中分辨率成像光谱仪 雪盖率 雪盖指数 分段模型
下载PDF
基于MODIS的雪情监测及其对农业的影响评估 被引量:3
7
作者 沈斌 房世波 +1 位作者 高西宁 王伟 《中国农业气象》 CSCD 2011年第1期129-133,共5页
2009年11月中旬,中国中部地区出现了大范围持续低温、雨雪、冰冻天气气候事件,造成了积雪灾害。本文利用连续多天的MODIS遥感数据,通过计算归一化差分积雪指数(NDSI,Normalized Difference SnowIndex)分析了北京、河南、河北、湖北、山... 2009年11月中旬,中国中部地区出现了大范围持续低温、雨雪、冰冻天气气候事件,造成了积雪灾害。本文利用连续多天的MODIS遥感数据,通过计算归一化差分积雪指数(NDSI,Normalized Difference SnowIndex)分析了北京、河南、河北、湖北、山东、山西、陕西7个地区的积雪状况,对积雪发生的时空特征进行了动态监测,并对监测省份农业受到的影响进行评估。结果表明:监测区整个降雪过程积雪面积呈单峰型变化,11月15日积雪面积最大,15日以后积雪面积开始减少,24日监测区积雪基本融化;山西省为本次降雪过程的核心区域,累计积雪总面积为62.89×104km2,陕西、河南、河北省次之,分别为40.10×104km2、37.62×104km2、37.58×104km2,山东、湖北、北京受积雪覆盖影响较小,积雪总面积分别为10.42×104km2、8.52×104km2、0.42×104km2;监测期间油菜作物均处于出苗期,持续积雪覆盖会对其产量造成一定影响。已进入越冬期的冬小麦,稳定的积雪覆盖会产生积雪融水,进而土壤墒情得到改善,有利于作物来年生长。尚未进入越冬期的冬小麦抗寒能力较差,持续低温积雪对其生长及产量造成不良影响。 展开更多
关键词 积雪 归一化差分积雪指数(ndsi) 遥感 冬小麦 油菜
下载PDF
利用FY-3B卫星提取西藏积雪信息研究 被引量:1
8
作者 扎西欧珠 拉巴卓玛 +2 位作者 普布次仁 拉巴 巴桑 《高原科学研究》 2018年第4期21-30,共10页
积雪在全球气候变化和水文特点中扮演着重要的角色,早在50多年前就已经被众多地质地理科学家和气象学家关注和重视。文章运用差分雪盖指数法(NDSI),通过FY-3B卫星数据对积雪面积进行了研究。结果显示:西藏地区1月至4月的积雪面积比较大... 积雪在全球气候变化和水文特点中扮演着重要的角色,早在50多年前就已经被众多地质地理科学家和气象学家关注和重视。文章运用差分雪盖指数法(NDSI),通过FY-3B卫星数据对积雪面积进行了研究。结果显示:西藏地区1月至4月的积雪面积比较大,主要分布在西藏的阿里地区、昌都地区和山南地区;从5月到8月份阿里地区几乎没有积雪分布;9月到次年12月积雪呈现先增多后减少再增多的变化趋势。FY-3B卫星提取的积雪结果与常用的MODIS/TERRA卫星提取的结果完全一致,表明国产卫星提取积雪信息的可行性。 展开更多
关键词 FY-3B卫星 积雪提取 差分雪盖指数法 西藏
下载PDF
Spatiotemporal changes of typical glaciers and their responses to climate change in Xinjiang,Northwest China
9
作者 HUANG Xiaoran BAO Anming +7 位作者 GUO Hao MENG Fanhao ZHANG Pengfei ZHENG Guoxiong YU Tao QI Peng Vincent NZABARINDA DU Weibing 《Journal of Arid Land》 SCIE CSCD 2022年第5期502-520,共19页
Glaciers are highly sensitive to climate change and are undergoing significant changes in mid-latitudes.In this study,we analyzed the spatiotemporal changes of typical glaciers and their responses to climate change in... Glaciers are highly sensitive to climate change and are undergoing significant changes in mid-latitudes.In this study,we analyzed the spatiotemporal changes of typical glaciers and their responses to climate change in the period of 1990-2015 in 4 different mountainous sub-regions in Xinjiang Uygur Autonomous Region of Northwest China:the Bogda Peak and Karlik Mountain sub-regions in the Tianshan Mountains;the Yinsugaiti Glacier sub-region in the Karakorum Mountains;and the Youyi Peak sub-region in the Altay Mountains.The standardized snow cover index(NDSI)and correlation analysis were used to reveal the glacier area changes in the 4 sub-regions from 1990 to 2015.Glacial areas in the Bogda Peak,Karlik Mountain,Yinsugaiti Glacier,and Youyi Peak sub-regions in the period of 1990-2015 decreased by 57.7,369.1,369.1,and 170.4 km^(2),respectively.Analysis of glacier area center of gravity showed that quadrant changes of glacier areas in the 4 sub-regions moved towards the origin.Glacier area on the south aspect of the Karlik Mountain sub-region was larger than that on the north aspect,while glacier areas on the north aspect of the other 3 sub-regions were larger than those on the south aspect.Increased precipitation in the Karlik Mountain sub-region inhibited the retreat of glaciers to a certain extent.However,glacier area changes in the Bogda Peak and Youyi Peak sub-regions were not sensitive to the increased precipitation.On a seasonal time scale,glacier area changes in the Bogda Peak,Karlik Mountain,Yinsugaiti Glacier,and Youyi Peak sub-regions were mainly caused by accumulated temperature in the wet season;on an annual time scale,the correlation coefficient between glacier area and annual average temperature was-0.72 and passed the significance test at P<0.05 level in the Karlik Mountain sub-region.The findings of this study can provide a scientific basis for water resources management in the arid and semi-arid regions of Northwest China in the context of global warming. 展开更多
关键词 glacier area change normalized snow cover index(ndsi) climate change remote sensing Altay Mountains Tianshan Mountains Karakorum Mountains
下载PDF
基于MODIS与HJ-1-B数据的雪盖率反演及其相关因子分析 被引量:7
10
作者 张旭 唐宏 +1 位作者 赵祥 周廷刚 《长江流域资源与环境》 CAS CSSCI CSCD 北大核心 2010年第5期566-571,共6页
随着空间信息技术的发展及社会经济对雪盖监测产品的需求,亚像元雪盖制图逐渐成为积雪监测研究的重点。以环境与减灾卫星(HJ-1-B)数据作为地面真值计算MODIS数据中每个像元的积雪覆盖率,并与归一化雪被指数(NDSI)建立回归模型,从亚像元... 随着空间信息技术的发展及社会经济对雪盖监测产品的需求,亚像元雪盖制图逐渐成为积雪监测研究的重点。以环境与减灾卫星(HJ-1-B)数据作为地面真值计算MODIS数据中每个像元的积雪覆盖率,并与归一化雪被指数(NDSI)建立回归模型,从亚像元尺度反演MODIS数据的积雪覆盖率。以青海省玉树州作为研究区,实验结果表明该算法反演的雪覆盖率平均绝对误差均在0.2以内,在可接受的误差范围之内,说明该算法具有较强的稳定性和实用性。此外,在积雪覆盖率反演基础上,提出了与积雪覆盖率相关的另外两个相关因子:地表温度(LST)和植被指数(NDSI),分析表明:这两个因子与积雪覆盖率均存在明显的负相关关系,为基于多因子的雪盖率反演奠定了基础。 展开更多
关键词 雪覆盖率 雪被指数 地表温度 植被指数 MODIS HJ-1-B
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部