Page 120 - 2023年第54卷第7期
P. 120
参 考 文 献:
[ 1] 徐照明.2022年长江流域水旱灾害防御工作[J].中国防汛抗旱,2022,32(12):13 - 16,34.
[ 2] 胡振鹏.2022年鄱阳湖特大干旱及防旱减灾对策建议[J].中国防汛抗旱,2023,33(2):1 - 6,39.
[ 3] 水利部针对长江流域旱情启动干旱防御Ⅳ级应急响应[EB?OL].[2023 - 03 - 07].http:??www.news.cn?politics?
2022 - 08?11?c_1128908369htm.
[ 4] 夏军,陈进,佘敦先.2022年长江流域极端干旱事件及其影响与对策[J].水利学报,2022,53(1):1143 - 1153.
[ 5] 张强.科学解读 “2022年长江流域重大干旱” [J].干旱气象,2022,40(4):545 - 548.
[ 6] SNAPP:Landscapesensitivitytoecologicaldrought:Theknowns,needs,andsolutionsfortherealworld[EB?
OL][2022 - 09 - 22].https:??www.nceas.ucsb.edu?workinggroups?snapp - landscape - sensitivity - ecological - drought -
knowns - needs - and - solutions - real - world.
[ 7] CRAUSBAYSD,RAMIREZAR,CARTERSL,etal.Definingecologicaldroughtforthetwenty - firstCentury
[J].BulletinoftheAmericanMeteorologicalSociety,2017,98(12):2543 - 2550.
[ 8] MUNSONSM,BRADFORDJB, HULTINE K R.Anintegrativeecologicaldroughtframeworktospanplant
stresstoecosystem transformation[J].Ecosystems,2021,24(4):739 - 754.
[ 9] 粟晓玲,姜田亮,牛纪苹.生态干旱的概念及研究进展[J].水资源保护,2021,37(4):15 - 21,28.
[10] 金菊良,马强,崔毅,等.基于三元链式传递结构的区域旱灾实际风险综合防范机制分析[J].灾害学,
2022,37(1):6 - 12.
[11] JIANGT,SUX,SINGH VP,etal.A novelindexforecologicaldroughtmonitoringbasedonecologicalwater
deficit[J].EcologicalIndicators,2021,129:107804.
[12] JIANGT,SUX,SINGHVP,etal.Spatio - temporalpatternofecologicaldroughtsandtheirimpactsonhealthof
vegetationinNorthwesternChina [J].JournalofEnvironmentalManagement,2022,305:114356.
[13] BRADFORDJB,SCHLAEPFER D R, LAUENROTH W K, etal.Robustecologicaldroughtprojectionsfor
drylandsinthe21stcentury[J].GlobChangBiol,2020,26(7):3906 - 3919.
[14] AYANTOBOOO,WEIJ.Appraisingregionalmulti - categoryandmulti - scalardroughtmonitoringusingstandard
izedmoistureanomalyindex(SZI): A water -energybalanceapproach[J].JournalofHydrology, 2019,
579:124139.
[15] PARKSY,SURC,LEEJH,etal.Ecologicaldroughtmonitoringthroughfishhabitat - basedflowassessmentin
theGam riverbasinofKorea [J].EcologicalIndicators,2020,109:105830.
[16] BRESHEARSDD,CARROLL C JW, REDMOND M D, etal.A dirtydozen waystoDie: metricsand
modifiersofmortalitydrivenbydroughtandwarmingforatreespecies[J].FrontiersinForestsandGlobalChange,
2018.[2023 - 03 - 07].https:??www.frontiersin.org?articles?10.3389?ffgc.2018.00004.
[17] SHIM,YUANZ,SHIX,etal.DroughtassessmentofterrestrialecosystemsintheYangtzeRiverBasin,China
[J].JournalofCleanerProduction,2022,362:132234.
[18] 姜田亮,粟晓玲,郭盛明,等.西北地区植被耗水量的时空变化规律及其对气象干旱的响应[J].水利学
报,2021,52(2):229 - 240.
[19] WUM X,LUH Q.Amodifiedvegetationwatersupplyindex(MVWSI)anditsapplicationindroughtmonitoring
overSichuanandChongqing ,China[J].JournalofIntegrativeAgriculture,2016,15(9):2132 - 2141.
[20] XIAOBINGY,CHENLIANGL,TONGZHAOH,etal.Informationdiffusiontheory - basedapproachfortherisk
assessmentofmeteorologicaldisastersintheYangtzeRiverBasin[J].NaturalHazards,2021,107(3):2337 - 2362.
[21] WANGR,ZHAOC,ZHANGJ,etal.Bivariatecopulafunction - basedspatial - temporalcharacteristicsanalysis
ofdroughtinAnhuiProvince,China[J].MeteorologyandAtmosphericPhysics,2019,131(5):1341 - 1355.
[22] XUH.Modificationofnormaliseddifferencewaterindex(NDWI) toenhanceopenwaterfeaturesinremotely
sensedimagery [J].InternationalJournalofRemoteSensing,2006,27(14):3025 - 3033.
[23] ZOTARELLIL,DUKESM D,ROMERO CC,etal.StepbystepcalculationofthePenman - MonteithEvapo
transpiration(FAO - 56Method)[J].InstituteofFoodandAgriculturalSciences.UniversityofFlorida,2010,
8:AE459.
8
— 8 7 —