[1]ZHANG Yan,WANG Laigang,LI Shimin,et al.Temporal and Spatial Analysis of Winter Wheat Drought on County Scale Based on Vegetation Condition Index[J].Research of Soil and Water Conservation,2023,30(04):423-430.[doi:10.13869/j.cnki.rswc.2023.04.038.]
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Temporal and Spatial Analysis of Winter Wheat Drought on County Scale Based on Vegetation Condition Index

References:
[1] 果华雯,张元伟,宋小燕,等.中国南北过渡带干旱时空变化[J].南水北调与水利科技(中英文),2020,18(2):79-85.
[2] 靖娟利,和彩霞,王永锋,等.西南地区1902—2018年干旱时空演变特征分析[J].水土保持研究,2022,152(3):220-227.
[3] 国家统计局.中国统计年鉴[Z].北京:中国统计出版社,2021.
[4] 郭文茜,任建强,刘杏认,等.统计数据总量约束下全局优化阈值的冬小麦分布制图[J].遥感学报,2018,22(6):1023-1041.
[5] 史本林,朱新玉,胡云川,等.基于SPEI指数的近53年河南省干旱时空变化特征[J].地理研究,2015,34(8):1547-1558.
[6] Yan M. Remote sensing monitoring of agricultural drought in Henan Province during spring and summer of 2009[J]. Applied Mechanics and Materials, 2012,193(195/196):1189-1193.
[7] 王来刚,刘婷,高超,等.基于环境减灾卫星遥感数据的小麦干旱监测研究[J].河南农业大学学报,2013,47(4):465-469.
[8] 刘英,岳辉,李遥,等.基于MODIS的河南省春旱遥感监测[J].干旱地区农业研究,2018,36(3):218-223.
[9] Huang J X, Zhuo W, Li Y, et al. Comparison of three remotely sensed drought indices for assessing the impact of drought on winter wheat yield[J]. International Journal of Digital Earth, 2020,13(4):504-526.
[10] Kogan F. Droughts of the late 1980s in the United States as derived from NOAA polar-orbiting satellite data[J]. Bulletin of the American Meteorological Society, 1995,76(5):655-668.
[11] Francisco Z, Mario L S, Koen V, et al. Sixteen years of agricultural drought assessment of the BioBío region in Chile using a 250 m resolution vegetation condition index(VCI)[J]. Remote Sensing, 2016,8(6):1-20.
[12] 吕潇然,尹晓天,宫阿都,等.基于植被状态指数的云南省农业干旱状况时空分析[J].地球信息科学学报,2016,18(12):1634-1644.
[13] 罗彪,刘潇,郭萍.基于MODIS数据的河套灌区遥感干旱监测[J].中国农业大学学报,2020,25(10):44-54.
[14] Yu Y H, Shen Y Z, Wang J L, et al. Assessing the response of vegetation change to drought during 2009—2018 in Yunnan Province, China[J]. Environmental Science and Pollution Research, 2021,28(34):47083-47085.
[15] Shang Y R, Hu Q H, Liu G Y, et al. Winter wheat drought monitoring and comprehensive risk assessment: case study of Xingtai administrative district in North China[J]. Journal of Environmental Science and Engineering A,2017,6(3):135-143.
[16] Dutra D J, Elmiro M A T, Nero M A, et al. Temporal analysis of drought coverage in a watershed area using remote sensing spectral indexes[J]. Sociedade & Natureza, 2021,33.DOI:10.14393/SN-v33-2021-59505.
[17] 李新尧,杨联安,聂红梅,等.基于植被状态指数的陕西省农业干旱时空动态[J].生态学杂志,2018,37(4):1172-1180.
[18] 季民,张超,赵建伟,等.基于VCI指数的青藏地区春旱时空动态变化分析[J].国土资源遥感,2021,33(1):152-157.
[19] Baniya B, Tang Q, Xu X, et al. Spatial and temporal variation of drought based on satellite derived vegetation condition index in Nepal from 1982-2015[J]. Sensors, 2019,19(2):1-21.
[20] Zhang L F, Jiao W Z, Zhang H M, et al. Studying drought phenomena in the Continental United States in 2011 and 2012 using various drought indices[J]. Remote Sensing of Environment, 2017,190:96-106.
[21] 沙莎,郭铌,李耀辉,等.植被状态指数VCI与几种气象干旱指数的对比:以河南省为例[J].冰川冻土,2013,35(4):990-998.
[22] 刘高鸣,谢传节,何天乐,等.基于多源数据的农业干旱监测模型构建[J].地球信息科学学报,2019,21(11):1811-1822.
[23] 何厚军,姚保顺,陈亮,等.墒情遥感监测指数对比分析与灌区应用研究[J].测绘与空间地理信息,2016,39(6):40-42.
[24] Kogan F, Sullivan J. Development of global drought watch system using NOAA/AVHRR data[J]. Advances in Space Research, 1993,13(5):219-222.
[25] 梁任刚,周旭,李松,等.基于CWSI的贵州省干旱时空变化特征及影响因素分析[J].水土保持研究,2022,29(3):284-291.
[26] 同英杰,文彦君,张翀.2003—2017年陕西省NDVI时空变化及其影响因素[J].水土保持通报,2020,40(3):155-162.
[27] 王介勇,刘彦随.1990—2005年中国粮食产量重心演进格局及其驱动机制[J].资源科学,2009,31(7):1188-1194.
[28] 马春玥,买买提·沙吾提,姚杰,等.1950—2015年中国棉花生产时空动态变化[J].地理学报,2020,75(8):1699-1710.
[29] 夏利恒,刘京,尉芳,等.陕西渭北旱塬区耕地时空格局变化分析[J].农业工程学报,2021,37(5):256-264.
[30] 宋戈,张文琦.粮食作物种植视角下东北粮食主产区耕地利用的时空分化特征[J].农业工程学报,2020,36(15):1-8.
[31] 郭铌,王小平.遥感干旱应用技术进展及面临的技术问题与发展机遇[J].干旱气象,2015,33(1):1-18.
[32] 高军波,韩勇,喻超,等.河南省县域农作物生产空间格局演变及专业化分区研究[J].中国农业资源与区划,2019,40(7):152-163.
[33] 温庆志,孙鹏,张强,等.基于多源遥感数据的农业干旱监测模型构建及应用[J].生态学报,2019,39(20):7757-7770.
[34] 闫研,李忠贤.基于SPEI的河南省冬小麦生育期干旱时空特征分析[J].南京信息工程大学学报:自然科学版,2015,7(2):159-167.
[35] 王晓东,马晓群,许莹,等.淮河流域主要农作物全生育期水分盈亏时空变化分析[J].资源科学,2013,35(3):665-672.
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