参考文献/References:
[1] 周丹,张勃,罗静,等.基于SPEI的华北地区近50年干旱发生强度的特征及成因分析[J].自然灾害学报,2014,23(4):192-202 [ZHOU Dan,ZHANG Bo,LUO Jing,et al.Characteristics and genesis of drought intensity in North China based on SPEI in recent 50 years [J].Journal of Natural Disasters,2014,23(4):192-202]
[2] 杜华明,延军平.西秦岭地区气候变化特征与干旱灾害趋势[J].山地学报,2014,32(1):58-65 [DU Huaming,YAN Junping.Characteristics of climate change and trend of drought disaster in West Qinling area [J].Mountain research,2014,32(1):58-65]
[3] 王谦.中国干旱、半干旱地区的分布及其主要气候特征[J].干旱地区农业研究,1983,5(2):18-31.[WANG Qian.China's arid and semi-arid areas of the distribution and its main climate characteristics [J].Northwest Agricultural College,1983,5(2):18-31]
[4] 李伟光,易雪,侯美亭,等.基于标准化降水蒸散指数的中国干旱趋势研究[J].中国生态农业学报, 2012,20(5):643-649 [LI Weiguang,YI Xue,HOU Meiting,et al.Study on drought trends in China based on standardized precipitation evapotranspiration [J].Chinese Journal of Eco-Agriculture,2012,20(5):644-645]
[5] 张俊,陈桂亚,杨文发.国内外干旱研究进展综述[J].人民长江,2011,42(5):65-69 [ZHANG Jun,CHEN Guiya,YANG Wenfa.Summary of research progress on drought at home and abroad [J].Yangtze River,2011,42(5):65-69]
[6] 段莹,王文,蔡晓军.PDSI、SPEI及CI指数在2010/2011年冬、春季江淮流域干旱过程的应用分析[J].高原气象,2013,32(4):1126-1139 [DUAN Ying,WANG Wen,CAI Xiaojun.Application of PDSI, SPEI and CI index in drought process of JAC in winter and spring in 2010/2011 [J].Plateau Meteorology,2013,32(4):1126-1139]
[7] 何娇楠,李运刚,李雪,等.云南省1961-2012年干旱时空变化特征[J].山地学报,2016,34(1):12-27 [HE Jiaonan,LI Yungang,LI Xue,et al.Spaturation and spatial characteristics of drought in Yunnan Province from 1961 to 2012 [J].Mountain Research,2016,34(1):12-27]
[8] POTOPOVÁ V, PETRTPNEKC P, MOZN'/Y M,et al.Performance of the standardised precipitation evapotranspiration index at various lags for agricultural drought risk assessment in the Czech Republic [J].Agricultural and Forest Meteorology,2015,202(202):26-38
[9] GOUVEIA C,TRIGO R M,BEGUERíA S, et al.Drought impacts on vegetation activity in the Mediterranean region: an assessment using remote sensing data and multi-scale drought indicators [J].Global and Planetary Change,2016,151(6):15-27
[10] 任培贵,张勃,张调风,等.基于SPEI的中国西北地区气象干旱变化趋势分析[J].水土保持通报,2014,34(1):182-187 [REN Peigui,ZHANG Bo,ZHANG Tiaofeng,et al.Study on trend of meteorological drought in northwest China based on SPEI [J].Journal of Soil and Water Conservation,2014,34(1):182-187]
[11] 熊光洁,张博凯,李崇银,等.基于SPEI的中国西南地区1961-2012年干旱变化特征分析[J].气候变化研究进展,2013,9(3):192-198 [XIONG Guangjie,ZHANG Bokai,LI Chongyin,et al.Study on the characteristics of arid changen Southwest China from 1961 to 2012 based on SPEI [J].Advances in Research on Climate Change,2013,9(3):192-198]
[12] 刘世梁,田韫钰,安南南,等.基于逐月标准化降水蒸散指数的多尺度方法分析气候变化对澜沧江流域归一化植被指数的影响[J].气候与环境研究,2015,20(6):705-714 [LIU Shiliang, TIAN Yunyu, AN Nannan,et al.Effects of climate change on normalized vegetation index in Lancangjiang River Basin by multi-scale method based on monthly standardized precipitation evapotranspiration index [J].Chinese Journal of Climate and Environment,2015,20(6):705-714]
[13] 王兆礼,黄泽勤,李军,等.基于SPEI和NDVI的中国流域尺度气象干旱及植被分布时空演变[J].农业工程学报,2016,32(14):177-186 [WANG Zhaoli,HUANG Zeqin,LI Jun,et al.Spatial and temporal evolution of meteorological drought and vegetation distribution in China watershed based on SPEI and NDVI [J].Journal of Agricultural Engineering,2016,32(14):177-186]
[14] 李运刚,何大明.红河流域NDVI时空变化及其与气候因子的关系[J].山地学报,2009,27(3):333-340 [LI Yungang, HE Daming.Spatial and temporal variation of NDVI in the Red River Basin and its relationship with climatic factors [J].Mountain Research,2009,27(3):333-340]
[15] 滑永春,彭道黎,陈鹏飞.基于MODIS NDVI的京津风沙源工程治理区荒漠化动态监测[J].西北林学院学报,2010,25(6):210-215 [HUA Yongchun, PENG Daoli, CHEN Pengfei.The dynamic monitoring of desertification in Beijing-Tianjin Sand Source Region area of MODIS NDVI [J].Journal of Northwest Forestry,2010, 25(6):210-215]
[16] 刘洛,徐新良,段建南,等.京津风沙源区生态环境时空变化的遥感监测分析[J].地球信息科学学报,2011,13(6):819-824 [LIU Luo,XU Xinliang,DUAN Jiannan,et al.Remote sensing monitoring of spatial and temporal changes of eco-environment in Beijing-Tianjin Sand Source Region [J].Journal of Geo-Information Science,2011,13(6):819-824]
[17] 孙斌,高志海,王红岩,等.近30年京津风沙源区气候干湿变化分析[J].干旱区资源与环境,2014,28(11):164-170 [SUN Bin, GAO Zhihai, WANG Hongyan,et al.Characteristics of wet and dry climate change in Beijing-Tianjin Sand Source Region in recent 30 years [J].Journal of Arid Land Resources and Environment,2014,28(11):164-170]
[18] 裴亮,黄森旺,陈丽萍.京津风沙源区植被的时空变化及其对气候因子的响应[J].中国沙漠,2013,33(5):1593-1597 [PEI Liang,HUANG Senwang,CHEN Liping.Spatial and temporal variation of vegetation and its response to climatic factors in the sandstorm area of Beijing-Tianjin Sand Source Region [J].China Desert,2013,33(5):1593-1597]
[19] 赵林,武建军,吕爱峰,等.京津风沙源区植被变化对降水的响应规律研究[J].北京师范大学学报,2010,46(5):610-618 [ZHAO Lin,WU Jianjun,LV Aifeng,et al.Study on the response of vegetation to precipitation in Beijing-Tianjin Sand Source Region [J].Journal of Beijing Normal University,2010,46(5):610-618]
[20] 王全会.京津风沙源治理工程阶段性评价[D].北京:中国农业大学,2005 [WANG Quanhui.Beijing-Tianjin Sand Source Region control project stage evaluation [D].Beijing: China Agricultural University,2005]
[21] VICENTESERRANO S M, BEGUERÍA S, LÓPEZMORENO J I,et al.A multiscalar drought index sensitive to global warming: the standardized precipitation evapotranspiration inde[J].Journal of Climate,23(7):1696-1718
[22] 庄少伟,左洪超,任鹏程,等.标准化降水蒸发指数在中国区域的应用[J].气候与环境研究,2013,18(5):617-625 [ZHUANG Shaowei,ZUO Hongchao,REN Pengcheng,et al.Application of standardized precipitation evaporation index in China [J].Climate and Environment Research,2013,18(5):617-625]
[23] 刘世梁,田韫钰,尹艺洁,等.云南省植被NDVI时间变化特征及其对干旱的响应[J].生态学报,2016,36(15):4699-4707 [LIU Shiliang,TIAN Yunyu,YIN Yijie,et al.Characteristics of vegetation NDVI time variation and response to drought in Yunnan Province [J].Acta Ecologica Sinica,2016,36(15):4699-4707]
[24] MANN H B.Non-parametric tests against trend [J].Econometrica,1945,13(3):245-259
[25] KENDALL M G.Rank correlation methods [J].International Statistical Review,1975,41(3): 399-400
[26] LI Xing,HE Binbin,QUAN Xingwen,et al.Use of the Standardized Precipitation Evapotranspiration Index(SPEI)to characterize the drying trend in southwest China from 1982-2012[J].Remote Sensing,2015,7(8):10917-10937
[27] GOCIC M,TRAJKOVIC S.Analysis of changes in meteorological variables using Mann-Kendall and Sen's slope estimator statistical tests in Serbia [J].Global & Planetary Change,2013,100(1):172-182
[28] HAMED K H.Trend detection in hydrologic data: the Mann-Kendall trend test under the scaling hypothesis[J].Journal of Hydrology,2008,349(3/4):350-363
[29] 王 东,张 勃,安美玲,等.基于SPEI的西南地区近53a干旱时空特征分析[J].自然资源学报,2014,29(6):1003-1016 [WANG Dong,ZHANG Bo,AN Meiling,et al.Analysis of spatiotemporal characteristics of drought near 53a in southwest China based on SPEI [J].Journal of Natural Resources,2014,29(6):1003-1016]
[30] 孙滨峰,赵 红,王效科.基于标准化降水蒸发指数(SPEI)的东北干旱时空特征[J].生态环境学报,2015,24(1):22-28 [SUN Binfeng,ZHAO Hong,WANG Xiaoke.Temporal and spatial characteristics of arid in northeast China based on standardized precipitation evaporation index(SPEI)[J].Journal of Eco-Environmental Sciences,2015,24(1):22-28]
[31] 刘小龙,虞美秀.中国近60年干旱演变特征分析[J].干旱区资源与环境,2015,29(12):177-183 [LIU Xiaolong,YU Meixiu.Analysis of drought evolution characteristics in China in recent 60 years [J] Resources and Environment in Arid Regions,2015,29(12):177-183]
[32] YU M X,LI Q F,HAYES M J,et al.Are droughts becoming more frequent or severe in China based on the Standardized Precipitation Evapotranspiration Index: 1951-2010? [J].International Journal of Climatology,2014,34(3):545-558
[33] ZHANG X Y, GOLDBERG M, TARPLEY D, et al.Drought-induced vegetation stress in southwestern North American [J].Environmental Research Letters, 2010,5(2):024008
[34] MA W H, LIU Z L, WANG Z H, et al.Climate change alters interannual variation of grassland aboveground productivity: evidence from a 22-year measurement series in the Inner Mongolian grassland [J].Journal of Plant Research, 2010,123(4):509-517
[35] 武志涛.京津风沙源区植被变化及固碳效益研究[D].北京:北京师范大学,2013 [WU Zhitao.Beijing-Tianjin Sand Source Region of vegetation changes and carbon sequestration benefits [D].Beijing: Beijing Normal University,2013]
相似文献/References:
[1]杜华明,延军平.西秦岭地区气候变化特征与干旱灾害趋势[J].山地学报,2014,(01):58.
DU Huaming,YAN Junping.Characteristics of Climatic Change and Trend of Aridity in West Qinling[J].Mountain Research,2014,(04):58.
[2]赵志龙,张镱锂,刘峰贵,等.青藏高原农牧区干旱灾害风险分析[J].山地学报,2013,(06):672.
ZHAO Zhilong,ZHANG Yili,LIU Fenggui,et al.Drought Disaster Risk Analysis of Tibetan Plateau[J].Mountain Research,2013,(04):672.
[3]侯迎,王乃昂,张学敏,等.基于树轮资料重建祁连山东段冷龙岭1848年以来的干湿变化[J].山地学报,2011,(01):12.
HOU Ying,WANG Naiang,ZHENG Xuemin,et al.Precipitation Reconstruction from Tree Ring Width over the Eastern Part of the Qilian Mountains, Northwestern China[J].Mountain Research,2011,(04):12.
[4]何娇楠,李运刚*,李 雪,等.云南省1961—2012年干旱时空变化特征[J].山地学报,2016,(01):19.[doi:10.16089/j.cnki.1008-2786.000096]
HE Jiaonan,LI Yungang,LI Xue,et al.Temporal and Spatial Characteristics of Droughts over Yunnan Province During 1961—2012 HE Jiaonan, LI Yungang, LI Xue, HUANG Jiangcheng[J].Mountain Research,2016,(04):19.[doi:10.16089/j.cnki.1008-2786.000096]
[5]刘运通,金艳强,李 敬,等.元江干热河谷土壤温湿度变化及其对干旱的响应[J].山地学报,2017,(06):790.[doi:10.16089/j.cnki.1008-2786.000279]
LIU Yuntong,JIN Yanqiang,LI Jing,et al.Variation Characteristic of Soil Moisture and Soil Temperaturein Yuanjiang Savanna Ecosystem and Its Response to Drought[J].Mountain Research,2017,(04):790.[doi:10.16089/j.cnki.1008-2786.000279]
[6]李红梅 周秉荣*,申红艳,肖宏斌.青海高原干旱时空分异特征及发生风险研究[J].山地学报,2019,(02):230.[doi:10.16089/j.cnki.1008-2786.000417]
LI Hongmei,ZHOU Bingrong*,SHEN Hongyan XIAO Hongbing.Research on Temporal and Spatial Differentiation and Occurrence Risks of Drought in Qinghai, China[J].Mountain Research,2019,(04):230.[doi:10.16089/j.cnki.1008-2786.000417]