[1] 宋奇,高琪,马自强,等. 1990-2019年阿拉尔垦区植被覆盖时空变化特征分析[J]. 草地学报,2021,29(5):635-645 [2] 饶品增,王义成,王芳. 三江源植被覆盖区NDVI变化及影响因素分析[J]. 草地学报,2021,29(3):572-582 [3] 范娜,谢高地,张昌顺,等. 2001年至2010年澜沧江流域植被覆盖动态变化分析[J]. 资源科学,2012,34(7):1222-1231 [4] 邵怀勇,武锦辉,刘萌,等. MODIS多光谱研究攀西地区植被对气候变化响应[J]. 光谱学与光谱分析,2014(1):169-173 [5] 刘洋,刘荣高,陈镜明,等. 叶面积指数遥感反演研究进展与展望[J]. 地球信息科学学报,2013,15(5):734-743 [6] 何云丽,苏德荣,刘自学,等. 不同修剪高度下日本结缕草叶面积指数与密度的关系[J]. 草地学报,2009,17(4):527-531 [7] QIAO K,ZHU W,XIE Z. Application Conditions and Impact Factors for Various Vegetation Indices in Constructing the Lai Seasonal Trajectory Over Different Vegetation Types[J]. Ecological Indicators,2020,112:1-8 [8] CASA R,VARELLA H,BUIS S,et al. Forcing a Wheat Crop Model with Lai Data to Access Agronomic Variables:Evaluation of the Impact of Model and Lai Uncertainties and Comparison with an Empirical Approach[J]. European Journal of Agronomy,2012,37(1):1-10 [9] RICHARDSON A D,DAIL D B,HOLLINGER D Y. Leaf Area Index Uncertainty Estimates for Model-data Fusion Applications[J]. Agricultural and Forest Meteorology,2011,151(9):1287-1292 [10] HILL M J,GUERSCHMAN J P. The Modis Global Vegetation Fractional Cover Product 2001-2018:Characteristics of Vegetation Fractional Cover in Grasslands and Savanna Woodlands[J]. Remote Sensing,2020,12(3):406 [11] CHEN J M. Evaluation of Vegetation Indices and a Modified Simple Ratio for Boreal Applications[J]. Canadian Journal of Remote Sensing,1996,22(3):229-242 [12] ZHAO M,RUNNING S W. Drought-induced Reduction in Global Terrestrial Net Primary Production From 2000 Through 2009[J]. Science,2010,329(5994):940-943 [13] 李晓彤,覃先林,刘树超,等. 基于GF-1 WFV数据森林叶面积指数估算[J]. 国土资源遥感,2019,31(3):80-86 [14] 高林,李长春,王宝山,等. 基于多源遥感数据的大豆叶面积指数估测精度对比[J]. 应用生态学报,2016,27(1):191-200 [15] 王强,庞勇,李增元,等. 基于一种简单物理模型的叶面积指数反演[J]. 中国矿业大学学报,2016,45(3):623-629 [16] 江晓东,石姣姣,李映雪,等. 不同筋力冬小麦冠层反射光谱的差异分析[J]. 核农学报,2014,28(8):1503-1509 [17] 袁辉,秦其明,孙元亨. 河南漯河郾城区冬小麦LAI反演结果真实性检验[J]. 国土资源遥感,2020,32(1):162-168 [18] 陈艳华,张万昌,雍斌. 基于TM的辐射传输模型反演叶面积指数可行性研究[J]. 国土资源遥感,2007,19(2):44-49 [19] 王亮,林涛,严昌荣,等. 地膜残留量对新疆棉田蒸散及棵间蒸发的影响[J]. 农业工程学报,2016,32(14):120-128 [20] 陈艳华,张万昌,雍斌. 基于分类知识利用神经网络反演叶面积指数[J]. 生态学报,2007,27(7):2785-2793 [21] 贾洁琼,刘万青,孟庆岩,等. 基于GF-1 WFV影像和机器学习算法的玉米叶面积指数估算[J]. 中国图象图形学报,2018,23(5):107-117 [22] QI J,KERR Y H,MORAN M S,et al. Leaf Area Index Estimates Using Remotely Sensed Data and Brdf Models in a Semiarid Region[J]. Remote Sensing of Environment,2000,73(1):18-30 [23] 马茵驰,阎广建,丁文,等. 基于人工神经网络方法的冬小麦叶面积指数反演[J]. 农业工程学报,2009,25(12):187-192 [24] BACOUR C,BARET F,BÉAL D,et al. Neural Network Estimation of Lai,Fapar,Fcover and Lai×cab,From Top of Canopy Meris Reflectance Data:Principles and Validation[J]. Remote Sensing of Environment,2006,105(4):313-325 [25] XIAO Z,LIANG S,WANG J,et al. Use of General Regression Neural Networks for Generating the Glass Leaf Area Index Product From Time Series Modis Surface Reflectance[J]. Ieee Transactions on Geoscience and Remote Sensing,2014,52(1):209-223 [26] YANG P,WU W,TANG H,et al. Mapping Spatial and Temporal Variations of Leaf Area Index for Winter Wheat in North China[J]. Journal of Integrative Agriculture,2007,6(12):1437-1443 [27] LI Z,GUO X. Leaf Area Index Estimation in Semiarid Mixed Grassland By Considering Both Temporal and Spatial Variations[J]. Journal of Applied Remote Sensing,2013,7(1):1-17 [28] 张宇佳,袁金国,张莎. 2002-2011年河北省植被LAI时空变化特征[J]. 南京林业大学学报(自然科学版),2015,39(39):86-92 [29] 杨勇帅,李爱农,靳华安,等. 中国西南山区GEOV1,GLASS和MODIS LAI产品的对比分析[J]. 遥感技术与应用,2016,31(3):438-450 [30] 段利民,李玮,罗艳云,等. 锡林河流域植被叶面积指数时空变化特征及其对地形因子的响应[J]. 水土保持研究,2019,26(3):224-231 [31] 苏立彬,郭永刚,吴悦,等. 基于DEM的尼洋河流域地貌形态分析[J]. 中国水土保持科学,2020,18(3):12-21 [32] 严松. 尼洋河中下游高寒山区泥石流发育规律和危险性评价研究[D]. 成都:成都理工大学,2018:1-2 [33] 达瓦次仁,巴桑赤烈,白玛,等. 尼洋河流域水文特性分析[J]. 水文,2008,28(4):92-94 [34] 郝振纯,余超,董小涛,等. 基于GsMAP的尼洋河流域降水时空分布特征研究[J]. 水电能源科学,2020,38(2):1-4 [35] 郝守宁,李成林,郭永刚. 西藏尼洋河流域饮用水源地重金属健康风险评价[J]. 环境科学与技术,2020,43(5):160-169 [36] 林振耀,吴祥定. 青藏高原气侯区划[J]. 西藏农业科技,1981(2):49-57 [37] DONG L,YAN Z,SHENG H L,et al. Monitoring land cover change detection with NOAA-AVHRR and MODIS remotely sensed data in the North and West of Africa from 1982 to 2015[J]. Environmental Science and Pollution Research,2020,27:5873-5889 [38] XIAO Z,WANG T,LIANG S,et al. Estimating the Fractional Vegetation Cover From Glass Leaf Area Index Product[J]. Remote Sensing,2016,8(4):1-19 [39] 罗慧芬,苗放,叶成名,等. 汶川地震前后茂县植被覆盖度变化研究[J]. 水土保持通报,2013,33(3):202-205 [40] ZHU J,XIE A,QIN X,et al. An Assessment of Era5 Reana1ysis for Antarctic Near Surface Air Temperature[J]. Atmosphere,2021,12(2):1-23 [41] 李晓蕾,徐丽萍,位宏,等. 叶尔羌河流域植被覆盖度时空变化分析[J]. 西部林业科学,2019,48(4):86-93 [42] 吴国雄,段安民,张雪芹,等. 青藏高原极端天气气候变化及其环境效应[J]. 自然杂志,2013,35(3):167-171 [43] 张东艳,吴运卿,侯雨坤. 尼洋河流域降水气温变化趋势预测研究[J]. 高原农业,2017,1(1):45-52,58 [44] 卢乔倩,江涛,柳丹丽,等. 中国不同植被覆盖类型NDVI对气温和降水的响应特征[J]. 生态环境学报,2020,29(1):23-34 |