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1、JournalofHydrology298(2004)311–334www.elsevier.com/locate/jhydrolImpactsofdifferentprecipitationdatasourcesonwaterbudgetsJianzhongGuoa,XuLianga,*,L.RubyLeungbaDepartmentofCivilandEnvironmentalEngineering,UniversityofCalifornia,Berkeley,CA94720-1710,USAbPacificNorthwestNa
2、tionalLaboratory,Richland,WA,USAReceived14May2003;revised4August2003;accepted22August2003AbstractRadarandrain-gaugeprecipitationdatasetsareusedtoexploretheimpactsofdifferentprecipitationdatasourcesonwaterbudgetssimulatedbytheThree-LayerVariableInfiltrationCapacity(VIC-3L
3、)landsurfacemodeloverthewatershedoftheIllinoisRiveratWatts,Oklahoma.Hourlygrid-basedNEXRAD(NextGenerationRadar)StageIIIprecipitationdata2(approximately4£4km)wereaggregatedintimeandspacetodailyprecipitationat1/8degreeandcomparedtotheUniversityofWashington(UW)dailyprecipi
4、tationdata,whichweregriddedat1/8degreebasedonrain-gaugeprecipitationdata.ComparisonsofthetemporalcumulativeprecipitationmagnitudesindicatethattheNEXRADprecipitationissmallerthantheUWdataandtheraingaugemeasurements.HyetographsobtainedfromtheNEXRADdataingeneralappeartoben
5、arrowerwithhigherpeaks.Inaddition,theNEXRADdataarebetterincapturingtheprecipitationspatialdistributionsthantheUWdata.Investigationsofwaterfluxesbasedonsimulationsforcedbythetwotypesofprecipitationdatasetssuggestthatrealisticstreamflowsimulations,comparedtotheobserveddaily
6、streamflowattheoutletoftheIllinoisRiveratWatts,canbeobtainedifmodelparametersarecalibrated.Comparedtosoilmoistureofthetotalzone,runoffandevapotranspirationaremoresensitivetothetemporalandspatialdistributionsofprecipitation,withrunoffbeingmostsensitive.Also,runoffandevapo
7、transpirationobtainedbasedontheNEXRADprecipitationdatashowmorespatialheterogeneitiesthanthoseobtainedbyusingtheUWprecipitationdata.Moreover,themagnitudesofthecomponentsofthewaterbudgetcanbestronglyimpactedbytheVIC-3Lcalibratedparameters,buttheirspatialdistributionpatter
8、nsmaynotbesignificantlyaffected.q2004ElsevierB.V.Allrightsreserved.Keywords:Landsurfacemodel;Radarprecipitation