• Journal of Natural Resources
  • Vol. 35, Issue 12, 3051 (2020)
Long FEI1, Guo-rong DENG2, Hong-yan ZHANG2、*, Xiao-yi GUO2, and Xiao-dong WANG1
Author Affiliations
  • 1School of Geographical Sciences, Changchun Normal University, Changchun 130032, China
  • 2School of Geographical Sciences, Northeast Normal University, Changchun 130024, China
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    DOI: 10.31497/zrzyxb.20201219 Cite this Article
    Long FEI, Guo-rong DENG, Hong-yan ZHANG, Xiao-yi GUO, Xiao-dong WANG. Spatiotemporal patterns of precipitation and drought and flood using Z-index in Democratic People's Republic of Korea[J]. Journal of Natural Resources, 2020, 35(12): 3051 Copy Citation Text show less
    References

    [1] PARKS, IMJ, JANGE. Drought assessment and monitoring through blending of multi-sensor indices using machine learning approaches for different climate regions[D]. Agricultural and Forest Meteorology, 216, 157-169(2016).

    [2] 田苗, 李卫国. 基于TRMM遥感数据的旱涝时空特征分析. 农业机械学报, 2015,46(5):252-257. [ TIANM, LIW G. Analysis of spatial and temporal characteristics of droughtand flood based on TRMM remote sensing data. Transactions of the CSAM, 2015,46(5):252-257.] [TIAN M, LI W G. Analysis of spatial and temporal characteristics of droughtand flood based on TRMM remote sensing data. Transactions of the CSAM, 2015, 46(5): 252-257.]

    [3] 毕硕本, 孙力, 李兴宇. 基于EEMD的1470—1911年黄河中下游地区旱涝灾害多时间尺度特征分析. 自然灾害学报, 2018, (1):137-147. [ BIS B, SUNL, LIX Y. Characteristics of drought and flood disasters in the middle and lower reaches of the Yellow River from 1470 to 1911 based on EEMD method. Journal of Natural Disasters, 2018, (1):137-147.] [BI S B, SUN L, LI X Y. Characteristics of drought and flood disasters in the middle and lower reaches of the Yellow River from 1470 to 1911 based on EEMD method. Journal of Natural Disasters, 2018, (1): 137-147.]

    [4] 李双双, 杨赛霓, 刘宪锋. 1960—2013年北京旱涝变化特征及其影响因素分析. 自然资源学报, 2015,30(6):951-962. [ LIS S, YANGS N, LIUX F. The Characteristics of drought-flood variation and its influence factors in Beijing during 1960-2013. Journal of Natural Resources, 2015,30(6):951-962.] [LI S S, YANG S N, LIU X F. The Characteristics of drought-flood variation and its influence factors in Beijing during 1960-2013. Journal of Natural Resources, 2015, 30(6): 951-962.]

    [5] 杜华明, 延军平, 杨登兴, 等. 嘉陵江流域降水变化及旱涝多时间尺度分析. 自然资源学报, 2015,30(5):836-845. [ DUH M, YANJ P, YANGD X, et al. The distribution of precipitation and multi-temporal scales drought-flood analysis in the Jialing River Basin. Journal of Natural Resources, 2015,30(5):836-845.] [DU H M, YAN J P, YANG D X, et al. The distribution of precipitation and multi-temporal scales drought-flood analysis in the Jialing River Basin. Journal of Natural Resources, 2015, 30(5): 836-845.]

    [6] 李卫国. 作物旱涝灾情遥感监测进展与思考. 江苏农业学报, 2013,29(6):1503-1506. [ LIW G. Development and thoughts of crop droughts and floods monitoring realized by remote sensing technology. Jiangsu Journal of Agriculture Science, 2013,29(6):1503-1506.] [LI W G. Development and thoughts of crop droughts and floods monitoring realized by remote sensing technology. Jiangsu Journal of Agriculture Science, 2013, 29(6): 1503-1506.]

    [7] BAYARIJARGALY, KARNIELIA, BAYASGLANM et al. A comparative study of NOAA-AVHRR derived drought indices using change vector analysis[D]. Remote Sensing of Environment, 105, 9-22(2006).

    [8] QUIRINGS M, GANESHS. Evaluating the utility of the Vegetation Condition Index (VCI) for monitoring meteorological drought in Texas[D]. Agricultural and Forest Meteorology, 150, 330-339(2010).

    [9] 孙美平, 张海瑜, 巩宁刚, 等. 基于TRMM降水订正数据的祁连山地区最大降水高度带研究. 自然资源学报, 2019,34(3):646-657. [ SUNM P, ZHANGH Y, GONGN G, et al. Study on maximum precipitation height zone in Qilian Mountains area based on TRMM Precipitaion data. Journal of Natural Researces, 2019,34(3):646-657.] [SUN M P, ZHANG H Y, GONG N G, et al. Study on maximum precipitation height zone in Qilian Mountains area based on TRMM Precipitaion data. Journal of Natural Researces, 2019, 34(3): 646-657.]

    [10] SUF, HONGY, LETTENMAIERD P. Evaluation of TRMM multisatellite precipitation analysis (TMPA) and its utility in hydrologic prediction in the La Plata Basin[D]. Journal of Hydrometeorology, 9, 622-640(2007).

    [11] HUFFMANG J, ADLERR F, BOLVIND T. The TRMM multi-satellite precipitation analysis (TMPA)[D]. Journal of Hydrometeorology, 8, 3-22(2010).

    [12] 武文博, 游庆龙, 王岱. 基于均一化降水资料的中国极端降水特征分析. 自然资源学报, 2016,31(6):1015-1026. [ WUW B, YOUQ L, WANGD. Characteristics of extreme precipitation in China based on homogenized precipitation data. Journal of Natural Resources, 2016,31(6):1015-1026.] [WU W B, YOU Q L, WANG D. Characteristics of extreme precipitation in China based on homogenized precipitation data. Journal of Natural Resources, 2016, 31(6): 1015-1026.]

    [13] ALMAZROUIM. Calibration of TRMM rainfall climatology over Saudi Arabia during 1998-2009[D]. Atmospheric Research, 99, 400-414(2011).

    [14] 王志伟, 翟盘茂. 中国北方近50年干旱变化特征. 地理学报, 2003,58(s1):61-68. [ WANGZ W, ZHAIP M. Climate change in drought over Northen China during 1950-2000. Acta Geographica Sinica, 2003,58(s1):61-68.] [WANG Z W, ZHAI P M. Climate change in drought over Northen China during 1950-2000. Acta Geographica Sinica, 2003, 58(s1): 61-68.]

    [15] 李红军, 江志红, 魏文寿. 近40年来塔里木河流域旱涝的气候变化. 地理科学, 2007,27(6):801-807. [ LIH J, JIANGZ H, WEIW S. Drought and flood change of Tarim River Basin in recent 40 years. Scientia Geographica Sinica, 2007,27(6):801-807.] [LI H J, JIANG Z H, WEI W S. Drought and flood change of Tarim River Basin in recent 40 years. Scientia Geographica Sinica, 2007, 27(6): 801-807.]

    [16] 邢子强, 严登华, 鲁帆, 等. 人类活动对流域旱涝事件影响研究进展. 自然资源学报, 2013,28(6):1070-1082. [ XINGZ Q, YAND H, LUF, et al. Advances in the study of anthropogenic effects on the droughtand flood events. Journal of Natural Resources, 2013,28(6):1070-1082.] [XING Z Q, YAN D H, LU F, et al. Advances in the study of anthropogenic effects on the droughtand flood events. Journal of Natural Resources, 2013, 28(6): 1070-1082.]

    [17] 何艳虎, 陈晓宏, 林凯荣. 东江流域近50年旱涝时空演变特征. 地理科学, 2014,34(11):1391-1398. [ HEY H, CHENX H, LINK R. Characteristic of the spatio-temporal distribution of droughts and floods in the Dongjiang Basin in recent 50 years. Scientia Geographica Sinica, 2014,34(11):1391-1398.] [HE Y H, CHEN X H, LIN K R. Characteristic of the spatio-temporal distribution of droughts and floods in the Dongjiang Basin in recent 50 years. Scientia Geographica Sinica, 2014, 34(11): 1391-1398.]

    [18] 彭世球, 刘段灵, 孙照渤. 区域海气耦合模式研究进展. 中国科学: 地球科学, 2012,27(9):1301-1316. [ PENGS Q, LIUD L, SUNZ B. Recent advances in regional air-sea coupled models. Science China: Earth Sciences.2012,27(9):1301-1316.] [PENG S Q, LIU D L, SUN Z B. Recent advances in regional air-sea coupled models. Science China: Earth Sciences. 2012, 27(9): 1301-1316.]

    [19] 景丞, 王艳君, 姜彤. CMIP5多模式对朝鲜干旱模拟与预估. 干旱区资源与环境, 2016,30(12):95-102. [ JINGC, WANGY J, JIANGT. Simulation and estimation of droughts in North Korea by CMIP5 multi-model ensembles. Journal of Arid Land Resources and Environment, 2016,30(12):95-102.] [JING C, WANG Y J, JIANG T. Simulation and estimation of droughts in North Korea by CMIP5 multi-model ensembles. Journal of Arid Land Resources and Environment, 2016, 30(12): 95-102.]

    [20] 杜灵通, 田庆久, 黄彦, 等. 基于TRMM数据的山东省干旱监测及其可靠性检验. 农业工程学报, 2012,28(2):121-126. [ DUL T, TIANQ J, HUANGY, et al. Drought monitoring based on TRMM data and its reliability validation in Shandong province. Transactions of the CSAE, 2012,28(2):121-126.] [DU L T, TIAN Q J, HUANG Y, et al. Drought monitoring based on TRMM data and its reliability validation in Shandong province.Transactions of the CSAE, 2012, 28(2): 121-126.]

    [21] 王蕾. 朝鲜农作物遥感估产及粮食生产潜力评价. 长春: 东北师范大学, 2012. [ WANGL. The crop yield estimation and evaluation for potential grain productivity in North Korea. Changchun: Northeast Normal University, 2012.] [WANG L. The crop yield estimation and evaluation for potential grain productivity in North Korea. Changchun: Northeast Normal University, 2012.]

    [22] 刘小婵, 赵建军, 张洪岩, 等. TRMM降水数据在东北地区的精度验证与应用. 自然资源学报, 2015,30(6):1047-1056. [ LIUX C, ZHAOJ J, ZHANGH Y, et al. Accuracy validation and application of TRMM precipitation data in Northeast China. Journal of Natural Resources, 2015,30(6):1047-1056.] [LIU X C, ZHAO J J, ZHANG H Y, et al. Accuracy validation and application of TRMM precipitation data in Northeast China. Journal of Natural Resources, 2015, 30(6): 1047-1056.]

    [23] 蔡研聪, 金昌杰, 王安志, 等. 中高纬度地区TRMM卫星降雨数据的精度评价. 应用生态学报, 2014,25(11):3296-3306. [ CAIY C, JINC J, WANGA Z, et al. Accuracy evaluation of the TRMM satellite-based precipitation data over the mid-high latitudes. Chinese Journal of Applied Ecology, 2014,25(11):3296-3306.] [CAI Y C, JIN C J, WANG A Z, et al. Accuracy evaluation of the TRMM satellite-based precipitation data over the mid-high latitudes. Chinese Journal of Applied Ecology, 2014, 25(11): 3296-3306.]

    [24] 李景刚, 李纪人, 黄诗峰. 基于TRMM数据和区域综合Z指数的洞庭湖流域近10年旱涝特征分析. 资源科学, 2010,32(6):1103-1110. [ LIJ G, LIJ R, HUANGS F. Characteristics of the recent 10-year flood/drought over the Dongting Lake Basin based on TRMM precipitation data and regional integrated Z-Index. Resources Science, 2010,32(6):1103-1110.] [LI J G, LI J R, HUANG S F. Characteristics of the recent 10-year flood/drought over the Dongting Lake Basin based on TRMM precipitation data and regional integrated Z-Index. Resources Science, 2010, 32(6): 1103-1110.]

    [25] 何萍, 白洪强, 李矜霄. 基于Z指数的昆明市洪涝研究. 地球与环境, 2015,43(1):71-79. [ HEP, BAIH Q, LIJ X. Research of flooding based on Z index in Kunming city. Earth and Environment, 2015,43(1):71-79.] [HE P, BAI H Q, LI J X. Research of flooding based on Z index in Kunming city. Earth and Environment, 2015, 43(1): 71-79.]

    [26] 袁媛, 王心源, 雷能忠. 基于GIS的江淮分水岭地区旱涝灾害时空分析. 水文, 2007,27(6):36-38. [ YUANY, WANGX Y, LEIN Z. Analysis of spatial-temporal characteristics of flood and drought in the divide watershed between the rivers of Yangtze and Huaihe Based on GIS. Journal of China Hydrology, 2007,27(6):36-38.] [YUAN Y, WANG X Y, LEI N Z. Analysis of spatial-temporal characteristics of flood and drought in the divide watershed between the rivers of Yangtze and Huaihe Based on GIS. Journal of China Hydrology, 2007, 27(6): 36-38.]

    [27] 鞠笑生, 杨贤为, 陈丽娟. 我国单站旱涝指标确定和区域旱涝级别划分的研究. 应用气象学报, 1997,8(1):26-33. [ JUX S, YANGX W, CHENL J. Research on determin ation of station indexes and division of regional flood/drought grades in China. Journal of Applied Meteorological Science, 1997,8(1):26-33.] [JU X S, YANG X W, CHEN L J. Research on determin ation of station indexes and division of regional flood/drought grades in China. Journal of Applied Meteorological Science, 1997, 8(1): 26-33.]

    [28] DOUGLASE M, VOGELR M, KROLLC N. Trends in floods and low flows in the United States: Impact of spatial correlation[D]. Journal of Hydrology, 240, 90-105(2000).

    [29] MODARRESR, VDEPRDAS. Rainfall trends in arid and semi-arid regions of Iran[D]. Journal of Arid Environments, 70, 344-355(2007).

    [30] 李运刚, 何娇楠, 李雪. 基于SPEI和SDI指数的云南红河流域气象水文干旱演变分析. 地理科学进展, 2016,35(6):758-767. [ LIY G, HEJ Q, LIX. Hydrological and meteorological droughts in the Red River Basin of Yunnan province based on SPEI and SDI Indices. Progress in Geography, 2016,35(6):758-767.] [LI Y G, HE J Q, LI X. Hydrological and meteorological droughts in the Red River Basin of Yunnan province based on SPEI and SDI Indices. Progress in Geography, 2016, 35(6): 758-767.]

    [31] 戚德康, 南颖, 孙博杨, 等. 2000年以来朝鲜植被覆盖变化及其与气候因子的相关性研究. 干旱区地理, 2017,40(4):839-849. [ QID K, NANY, SUNB Y, et al. Changes of vegetation coverage and its relationship with climate factors in North Korea since 2000. Arid Land Geography, 2017,40(4):839-849.] [QI D K, NAN Y, SUN B Y, et al. Changes of vegetation coverage and its relationship with climate factors in North Korea since 2000. Arid Land Geography, 2017, 40(4): 839-849.]

    Long FEI, Guo-rong DENG, Hong-yan ZHANG, Xiao-yi GUO, Xiao-dong WANG. Spatiotemporal patterns of precipitation and drought and flood using Z-index in Democratic People's Republic of Korea[J]. Journal of Natural Resources, 2020, 35(12): 3051
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