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½FehCu@, ì>è㶰±äW tionaryweatherandwaterextremes :Areviewofmethodsfor
ezÁþ1ýì>è㶰±äWez。(2) theirdetection,attribution,andmanagement[J].Hydrolo
RCP4.5 RCP8.5 u@, B|¬(" 20 50a gyandEarthSystemSciences ,2021,25(7):3897-3935.
[4]EF, е, ÖrÁ, . G=eß>èã¶PÞ@°
&¿>è㶰±äWez*è㶰±äWe
±äW±[J]. WZW¶0°,2019,50(6):62-69.
zµ»½#þ 13.5% ~32.6%( ùÁû 26.4%)
[5]FAULKNERD,WARRENS,SPENCERP,etal.Canwe
15.3% ~39.1%( ùÁû 31.0%)。(3) B&¿
stillpredictthefuturefrom thepast ?Implementingnon
@, ö÷Ù® RCP4.5hCu@°±äWe
stationaryfloodfrequencyanalysisintheUK [J].Journal
zÁ² RCP8.5 uµ¡Ð*k, *y8 [11] ®« ofFloodRiskManagement,2020,13(1):17-31.
=]=eß(^ÃG。(4) £1õ#e [6]Ù, ðH, I J, . Ö×`a@Wc°±Ð±7
ö÷Ù«è?:W@väWq}ç[, ö÷Ù ¾(^[J]. WZW¶/0+,2018,38(4):89-94.
ì>è㶰±äWezàáþ1ýì>èã [7]h ¢, uù, Ù, . ÿ®>èã¶Wcæ
¶°±äWez, *µ2(^ [11,18] 21 ¡> o¡[[J]. $Wqq*WZ/0,2017,15
è㶰±äWezàá·1ýì>èã¶PÞ (3):1-4+27.
[8]n#$, v K, L/. §%&Ö->èãWc
@°±äWezQ³µa。
âøæ±7¾[J]. WZ6ø,2012,43(6):734-
4 7 P 739+748.
[9]HEChaofei,CHENFulong,WANGYixuan,etal.Flood
ÅcïJðõ#eö÷WcÙ/|¬(" frequencyanalysisofManasRiverBasininChinaunder
äWøs@, îéêÜe<pìLçs>èã nonstationarycondition[J].JournalofFloodRiskMan
¶äWéýÏnÏ,Öz, ®&¿« agement,2021,14(4):12745.
$~¢Ï(ENE)éê@, +%v¡\è30&¿ [10]STRUPCZEWSKIW G,SINGHVP,MITOSEKHT.Non
>è㶰±äWez, STeí@: stationaryapproachtoatsitefloodfrequencymodelling.
( 1)GAsd?ÈäWez Q Max1d 、Q Max3d Ⅲ.FloodanalysisofPolishrivers[J].JournalofHydrolo
Q Max1m {Æ,LOGNOsd?ÈäW gy,2001,248(1):152-167.
[11]y 8. <ÕÖ×@>è㶰±äWez(^
ez Q Max7d Q Max15d {Æ, B|¬("äW
[D]. MD: MDk6,2016.
ezø¥¦nÏÁ,®àá>èã¶。
[12]ANSATHASNEEMS,CHITHRANR,THAMPISG.As
( 2) *èã¶udµ», <pìLs,Öz
sessmentofnonstationarityanduncertaintyinprecipitation
{Æ>è㶱dew*A, ~½0° extremesofariverbasinunderclimatechange[J].Envi
±äWezÐ,®àá-。® RCP4.5 ronmentalModeling&Assessment,2021,26:295-312.
RCP8.5 ½FehCu@, t0°±äW [13]SINGH N,CHINNASAMY P.Nonstationaryfloodfre
Áþ1ö0°±äW。 quencyanalysisandattributionofstreamflow series :A
( 3) Åc¡[ GCM}("ÏØ|ú,®² casestudyofPeriyarRiver ,India[J].HydrologicalSci
ký¶, Äo<ô*sà。É|, <;A encesJournal ,2021,66(13):1866-1881.
[14]SALASJD,OBEYSEKERAJ.Revisitingtheconceptsof
RCP4.5 RCP8.5½o、 ·hCu@ GCM
returnperiodandriskfornonstationaryhydrologicex
ÏØ, @èÈî&'ìÄÂýÉFehCu
tremeevents[J].JournalofHydrologicEngineering,
Ü>è㶰±äWezý¶。
2014,19(3):554-568.
[15]PAREYS,MALEKF,LAURENTC,etal.Trendsandcli
oLM: mateevolution:Statisticalapproachforveryhightempera
[1]MILLYPCD,BETANCOURJ,FALKENMARKM,et turesinFrance[J].ClimaticChange,2007,81:331-352.
al.Stationarityisdead :Whitherwatermanagement[J]. [16]9J:. <ÕÖ×v ¡Üezéêý¶(^
Science ,2008,319(5863):573-574. [D]. $r: #¾k6,2016.
[2]B c, _ , !C. D=«èÜe>èã¶bÖ [17]6µ, ~ 5, í. õ#eÜeëÐø/|¬(
Üæ[J]. WXY*Wlm6ø,2018,29(6): "Ö-Ü5ì[J]. KN=,2020,41(9):79-84+91.
106-112+126. [18]y 8, OkË, v P, . 71fí>è㶰±äW
[3]SLATERLJ,ANDERSONB,BUECHELM,etal.Nonsta ÜÄý¶(^[J]. WZ6ø,2018,49(2):241-253.