Page 188 - 《水资源与水工程学报》2024年第6期
P. 188
1 4 & ' ( ) & * + , - 2024 $
8
BC¯¾D¿7×ì;2Ûüß®Õy doseZoneJournal ,2018,17(1):18.
EÆ&mPKGÈBCÕã, ÇÄÅ»ÿµ [12]ZHAOMing,WANGWenke,WANGZhoufeng,etal.
½»þn½CRlK}-z[¨©¼ð。 WateruseofSalixinthevariablyunsaturatedzoneofa
semiariddesertregionbasedoninsituobservation [J].
JournalofHydrology ,2020,591:125579.
¨©MN:
[13]BARTLEYR,ROTHCH,LUDWIGJ,etal.Runoffande
[1]LIUXiaomang,LIUChangming,BRUTSAERTW,etal.
rosionfromAustralia’stropicalsemiaridrangelands:influ
Investigationofageneralizednonlinearformofthecomple
enceofgroundcoverfordifferingspaceandtimescales[J].
mentaryprincipleforevaporationestimation [J].Journalof
HydrologicalProcesses ,2006,20(15):33173333.
GeophysicalResearch: Atmospheres,2018,123(8):
[14] GAO Zhaoliang, ZHANG Lu, CHENG Lei, etal.
39333942.
GroundwaterstoragetrendsintheLoessPlateauofChina
[2]Í\E, ò . 7×p¸ËUËç,îFðl
estimatedfrom streamflowrecords[J].JournalofHy
: '× 402,î§Ä½¾ [J]. D>&o$,
drology ,2015,530:281290.
2019,38(5):16001610.
[15]LIHuijie,SIBingcheng,WUPute,etal.Watermining
[3]FUHRMANJ,CLARENSAF,MCJEONH,etal.The
fromthedeepcriticalzonebyappletreesgrowingonloess
roleofnegativeemissionsinmeetingChina’s2060carbon
[J].HydrologicalProcesses,2018,33(2):320327.
neutralitygoal[J].OxfordOpenClimateChange,2021,1
[16]LIZhi,LINXueqing,XIANGWei,etal.Stableisotope
(1):kgab004.
tracingofheadwatersourcesinariveronChina ’sLoess
[4]HANZhiming,HUANGShengzhi,HUANGQiang,etal.
Plateau [J].HydrologicalSciencesJournal,2017,62
Effectsofvegetationrestorationongroundwaterdroughtin
(13):21502159.
theLoessPlateau,China[J].JournalofHydrology,2020,
[17]ALLEN A,CHAPMAN D.Impactsofafforestationon
591:125566.
groundwaterresourcesand quality [J]. Hydrogeology
[5]CHENChi,PARKT,WANGXuhui,etal.ChinaandIn
Journal ,2001,9(4):390400.
dialeadingreeningoftheworldthroughlandusemanage
ment[J].NatureSustainability,2019,2:122129. [18]WANGCong,WANGShuai,FUBojie,etal.Integrating
vegetationsuitabilityinsustainablerevegetationfortheLo
[6]YANGXiaonan,SUNWenyi,LIPengfei,etal.Reduced
essPlateau ,China[J].ScienceoftheTotalEnviron
sedimenttransportintheChineseLoessPlateauduetocli
matechangeandhumanactivities[J].ScienceoftheTotal ment ,2021,759:143572.
Environment,2018,642:591600. [19]CHENGXiangrong,HUANGMingbin,SHAOMing’an,
[7]SHIShangyu,YUJingjie,WANGFei,etal.Quantitative etal.A comparisonoffinerootdistributionandwater
contributionsofclimatechangeandhumanactivitiestoveg consumptionofmature CaraganakorshinskiiKomgrownin
etationchangesovermultipletimescalesontheLoessPlat twosoilsinasemiaridregion ,China[J].PlantandSoil,
eau [J].ScienceoftheTotalEnvironment,2021,755(Pt 2009,315:149161.
2):142419. [20]ZHANGShuai,DINGGuodong,YUMinghan,etal.Ap
[8]KOUPinglang,XUQiang,JINZhao,etal.Complexan plicationofboundarylayerdisplacementthicknessinwind
thropogenicinteractiononvegetationgreeningintheChi erosionprotectionevaluation :casestudyofaSalixpsam
neseLoessPlateau [J].ScienceoftheTotalEnvironment, mophila sandbarrier[J].InternationalJournalofEnviron
2021,778:146065. mentalResearchandPublicHealth ,2019,16(4):592.
[9]QIXiangzhen,JIAJunhe,LIUHuiyu,etal.Relativeim [21]GôH, I I, J&ç. .!Tþµ»I½êâü
portanceofclimatechangeandhumanactivitiesforvegeta K®ï[J]. .!»Ú,2023,43(3):920.
tionchangesonChina’ssilkroadeconomicbeltovermulti [22]ðK÷, X ;, 7", 4. ½¾n¬eÄSRI
pletimescales [J].Catena,2019,180:224237. KÂïBC[J]. .!%&: I%&,2021,
[10]WANGYunqiang,SHAOMing’an,SHAOHongbo.A 51(7):10801091.
preliminaryinvestigationofthedynamiccharacteristicsof [23]CAIDiwen,GEQuansheng,WANGXuming,etal.Con
driedsoillayersontheLoessPlateauofChina [J].Jour tributionsofecologicalprogramstovegetationrestoration
nalofHydrology ,2009,381(12):917. inaridandsemiaridChina [J].EnvironmentalResearch
[11]SHAOMing’an,WANGYunqiang,XIAYongqiu,etal. Letters ,2020,15(11):114046.
Soildroughtandwatercarryingcapacityforvegetationin [24]SHAORui,ZHANGBaoqing,SUTongxuan,etal.Esti
thecriticalzoneoftheLoessPlateau:areview[J].Va matingtheincreaseinregionalevaporativewaterconsump