[1] LI X L,GAO J,BRIERLEY G,et al. Rangeland degradation on the Qinghai-Tibet Plateau:implications for rehabilitation[J]. Land Degradation & Development,2013(24):72-80 [2] LI X L,PERRYLW G,GARY B,et al. Restoration prospects for Heitutan degraded grassland in the Sanjiangyuan[J]. Journal of Mountain ence,2013,10(4):687-698 [3] LI Y Y,DONG S K,WEN L,et al. Assessing the soil quality of alpine grasslands in the Qinghai-Tibetan Plateau using a modified soil quality index[J]. Environmental Monitoring & Assessment,2013,185(10):8011-8022 [4] LI Y Y,DONG S K,LIU S,et al. The interaction between poisonous plants and soil quality in response to grassland degradation in the alpine region of the Qinghai-Tibetan Plateau[J]. Plant Ecology,2014,215(8):809-819 [5] ZHANG Y,DONG S K,GAO Q Z,et al. Climate change and human activities altered the diversity and composition of soil microbial community in alpine grasslands of the Qinghai-Tibetan Plateau[J]. Science of the Total Environment,2016(562):353-363 [6] REN G H,DENG B,SHANG Z H,et al. Plant communities and soil variations along a successional gradient in an alpine wetland on the Qinghai-Tibetan Plateau[J]. Ecological Engineering,2013(61):110-116 [7] O' CALLAGHAN F,MARK D M. The extraction of drainage networks from digital elevation data[J]. Computer Vision Graphics and Image Processing,1984(28):323-344 [8] LAWRENCE W M,JURGEN G. Automated recognition of valley lines and drainage networks from grid digital elevation models:a review and a new method[J]. Journal of Hydrology,1995(167):393-396 [9] LAWRENCE W M,JURGEN G. An outlet breaching algorithm for the treatment of closed depressions in a raster DEM[J]. Computers & Geosciences,1999(25):835-844 [10] SEYLER F,MULLER F,COCHONNEAU G,et al. Watershed delineation for the Amazon sub-basin system using GTOPO30 DEM and a drainage network extracted from JERS SAR images[J]. Hydrological Processes,2010,23(22):3173-3185 [11] LAI Z,LI S,LV G,et al. Watershed delineation using hydrographic features and a DEM in plain river network region[J]. Hydrological Processes,2016,30(2):276-288 [12] WU T,LI J,LI T,et al. High-efficient Extraction of Drainage Networks from Digital Elevation Model Data Constrained by Enhanced Flow Enforcement from Known River Map[J]. Geomorphology,2019,340(SEP.1):184-201 [13] CHRISTOPHER B,OBIDA,GEORGE A,et al. River network delineation from Sentinel-1 SAR data-ScienceDirect[J]. International Journal of Applied Earth Observation and Geoinformation,2019(83):101910-101910 [14] WU T,LI J,LI T,et al. High-efficient Extraction of Drainage Networks from Digital Elevation Model Data Constrained by Enhanced Flow Enforcement from Known River Map[J]. Geomorphology,2019(340):184-201 [15] NGULA NIIPELE J,CHEN J. The usefulness of alos-palsar dem data for drainage extraction in semi-arid environments in The Iishana sub-basin[J]. Journal of Hydrology:Regional Studies,2018(21):57-67 [16] 韩霁虹. 小流域综合治理的概念与原则[J]. 农业科技与信息,2018,3(536):56-57 [17] 詹云军,章文,严岩,等. 长江流域实际蒸散发演变趋势及影响因素分析[J]. 生态学报,2021,41(17):1-12 [18] 李天翠,黄小龙,吴辰熙,等. 长江流域水体微塑料污染现状及防控措施[J]. 长江科学院院报,2021,38(6):143-150 [19] 赵亮,姚强胜,丁颖,等. 基于MODIS的黄河流域及其子流域近年来蒸散趋势分析[J]. 环球人文地理,2015(16):117-119 [20] 刘忠民,宋其龙,张文静. 可持续发展原则下的小流域综合治理研究[J]. 北京水利,2005(1):50-51 [21] 秦余华. 生态清洁小流域治理探析[J]. 科学技术创新,2020(12):68-69 [22] CHEN X B,WANG Y C,NI J R. Structural characteristics of river networks and their relations to basin factors in the Yangtze and Yellow River basins[J]. Science China-Technological Sciences,2019(62):1885-1895 [23] BAND L E. Topographic partition of watersheds with digital elevation models[J]. Water Resources Research,1986,22(1):15-24 [24] RULLI M C. A physically based watershed partitioning method[J]. Advances in Water Resources,2010,33(10):1206-1215 [25] CHOI Y. A new algorithm to calculate weighted flow-accumulation from a DEM by considering surface and underground stormwater infrastructure[J]. Environmental Modelling & Software,2012(30):81-91 [26] TARBOTON D G. A new method for the determination of flow directions and upslope areas in grid digital elevation models[J]. Water Resources Research,1997,33(2):309-319 [27] 代强,朱兰艳. 基于DEM的最佳集水面积阈值确定方法研究[J]. 中国水运,2018,18(8):166-168 [28] 靳晓辉,何俊仕,董克宝. 基于DEM的西辽河流域河网水系提取研究[J]. 节水灌溉,2014(10):43-45 [29] 姚炳光,周维博. 基于DEM和ArcGIS的浐灞流域水文特征提取研究[J]. 水资源与水工程学报,2017,28(6):8-13 [30] 汪玲玲. 基于DEM的秋浦河流域水文特征提取研究[J]. 黑龙江工程学院学报,2018,32(4):31-35 [31] 谢巍. 基于DEM数据的渭河子流域水文信息提取[J]. 西部大开发,2019,4(2):5-9 [32] 刘玉祯,刘文亭,冯斌,等. 坡向和海拔对高寒山地草甸植被分布格局特征的影响[J]. 草地学报,2021,29(6):1166-1173 [33] 钱前,张秀娟,王军邦,等. 2005-2017年青海三江源区草地家畜承载力时空格局研究[J]. 草地学报,2021,29(6):1311-1317 |