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ICM水动力-水质模型下苏州河道引水规模试验研究 Introduction: Inrecentyears,therapidgrowthinpopulationandurbanizationhasresultedinasignificantincreaseindemandforwaterresources.Inordertomeetthisdemand,thegovernmenthasstartedtolookforalternativesourcesofwater,includingriversandcanals.However,thewaterqualityofthesesourcesisoftennotsuitableforusewithouttreatment.Inordertoensurethatthewaterqualityissuitableforuse,itisnecessarytousemodelingmethodstosimulatethebehaviorofthewater.Inthispaper,wewilldiscussastudythatusedtheICM-HYDRO-QUALmodeltosimulatetheeffectsofdifferentwaterintakescenariosonwaterqualityintheSuzhouRiver. Methodology: ThestudywasconductedintheSuzhouRiverinChina.TheICM-HYDRO-QUALmodelwasusedtosimulatethebehaviorofthewaterintheriver.Themodeltakesintoaccountvariousparameterssuchasflowrate,temperature,dissolvedoxygen,andpollutants.Theresearchersusedthemodeltosimulatefourdifferentwaterintakescenarios,includingnointake,asmallintake,amediumintake,andalargeintake.Thesimulationswererunfordifferenttimeperiodstodeterminethelong-termeffectsofeachscenarioonwaterquality. Results: TheresultsofthesimulationshowedthatwaterqualityintheSuzhouRiverdeterioratedastheamountofwaterintakeincreased.Thesimulationsshowedthatthedissolvedoxygenintheriverdecreasedasthewaterintakeincreased,whichcouldhaveanegativeimpactontheaquaticecosystem.Thesimulationsalsoshowedthatpollutantsintheriverincreasedasthewaterintakeincreased,whichcouldhaveanegativeimpactonpublichealth. Discussion: ThestudyshowedthattheICM-HYDRO-QUALmodelisausefultoolforpredictingtheeffectsofwaterintakeonwaterquality.Themodelcanbeusedtosimulatedifferentscenariosandpredictthelong-termeffectsofeachscenarioonwaterquality.Inthisstudy,themodelwasusedtosimulatethebehavioroftheSuzhouRiver.Theresultsprovidedvaluableinsightsintothepotentialeffectsofdifferentwaterintakescenariosonwaterqualityintheriver. Conclusion: ThestudyshowedthattheICM-HYDRO-QUALmodelisausefultoolforpredictingtheeffectsofwaterintakeonwaterquality.ThesimulationsshowedthatwaterqualityintheSu