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OutlineofPresentationOverviewRecentadvancementsChemicalEORinChinaPolymerfloodingASPfloodingFacilitiesSomecontroversialissuesandchallengesSummaryChemicalEORGlobalStatusChinahasmostfieldexperiencesUShasfocusedonimprovementsinchemicals,labstudies,andsimulatorsIncreasedchemicalEORmechanisticunderstandingsandfieldactivitiesinUSandworld-wideinrecentyearsHarryL.ChangGeneralUnderstandingPolymerflooding(PF):AmatureEORprocessPolymergels:Usedsuccessfullyinwatershut-offandprofilemodificationinselectedreservoirsSurfactant-polymer(SP):EffectivebutexpensiveASP:Effective,lessexpensive,butrequiresextensivetreatmentofinjection/producedfluidsHarryL.ChangRecentAdvancementsChemicalsLaboratoryStudiesSimulationandSimulatorsProjectDesignandImplementationFacilities,Monitoring,andEvaluationMoreFieldExperiencesHarryL.ChangEORChemicalsPolymersandrelatedchemicalsSurfactantsCo-surfactantsCo-solventsHarryL.ChangImprovementsonPolymers
(UTDavidLevittDissertation)1500ppmHPAMpolymer,23°C,11s-101020304050050,000100,000150,000200,000Electrolyte
Concentration[TDS,ppm]Viscosity
[cp]NaCl9:1NaCl/CaCl2HarryL.ChangImprovedLaboratoryTechniquesPhasebehavior/solubalizationratioHightemperatureandliveoilCorefloodtechniquesHarryL.ChangPhaseBehaviorExperimentsPhasebehaviorexperimentsInexpensivetechniqueforsurfactantformulationMeasuresolubalizationparameters/IFT’sMeasurecoalescence/equilibrationtimeDetermine
microemulsionviscositiesSpecificsurfactant(s)canbetailoredforspecificoilsHarryL.Chang
AnExcellentMEPhaseBehavior
0.01.02.00.51.52.53.03.54.0Salinity,%:0.751.251.752.252.75InterfaceFluidityHighoilrecovery>90%Sorw,orSorc<0.04AdequatemobilitycontrolGoodsurfactant/polymertransportLowsurfactantretentionCoreFloodingHarryL.ChangSimulationandSimulatorsMechanisticmodelforcorefloodandpatternsimulationCalibrationandfieldscalesimulationAdvancedsimulatorsHarryL.ChangChemicalEORinChinaDaqingOilfieldLargestpolymerandASPfloodsintheworldPFoilproductioninDaqinghasbeenstabilizedat~200,000bbl/dover10yearsPolymerrequirementhasdoubledinlast10yearsfrom~80,000t/yrto~160,000t/yrLarge-scaleASPfloodshavebeenimplementedsince2006HarryL.ChangShengliOilfieldSecondlargestPFinChinaAlsohaspolymermanufacturingfacilitiesSeveralASPpilottestshavebeenconductedinthepastbutdecidedtouseSPinsteadHarryL.ChangPFinChinaShowedIncrementalrecoverydependsonreservoirqualitypolymerselectionpolymeramount,>500ppm.pvnowProductionofpolymerandemulsionsmaybeexpectedLargescaleinjection/productionfacilitiesarenecessaryforsuccessfuloperationsHarryL.ChangPolymerFloodingalsoShowedSimplifiedfieldoperationshavebeenpracticedinfield-wideoperationsOn-sitepolymerproductionwouldimprovetheeconomicsKYPAMpolymersappearstobemoreeffectiveinhighpermandhighsalinityreservoirsVisco-elasticbehaviorcanreduceSor(SPE127453)CDGwillenhancePFperformanceHarryL.ChangOilProductionbyPolymerFlooding
DaqingOilfield,ChinaATypicalPFFieldPerformanceTypicalPressureandPolymerProductionOilProductionbyPolymerFlooding
ShengliOilfield,ChinaKYPAMPolymersComblikewithshortbranchedchaintomaintaineffectivenessinhighsalinitybrinesWideMWrangeforreservoirswithdifferentpermeabilitiesSuccessfullyappliedinsomereservoirsinChinaHarryL.ChangViscosityDataofKYPAMPolymerConcentrationviscosityPerformanceofKYPAMPolymersPerformanceofKYPAMPolymersASPFloodsinChinaPilottesting:Daqing,Shengli,KaramayLargescalefieldprojectsinDaqingLargescaleinjection/productionfacilitieshavebeendevelopedinDaqingEmulsionandscaleproductionswereobservedHarryL.ChangFieldExamplesDaqingKaramayASPpilotsimulationHarryL.ChangASPPilotTestsConductedin
DaqingOilfieldHarryL.ChangASPResultsinDaqingHighincrementalrecoverySevereemulsionproductionSeverescaleproductionSPwithAinsteadofASP?OneofthemostdifficultoilforSPfloodingHarryL.ChangKaramayASPPilotTestDesignandFieldPerformance
(SPE64726)Processdesign/management:HarryChangProjectimplementation:KaramayOilfieldAsinglesurfactantsystemusingpetroleumsulfonatesproducedinalocalrefineryAppliedthesalinitygradientwithSTPPforsequestrationASPPilotTestWellPattern,2Z-B9-3WellGroup
KaramayOilField(SPE64726)ASPSlugDesignandInjectionSequence
(SPE64726)PAMPAMModellingCoreFlood-KaramayASPProject
ModellingCoreflood(UTCHEM)-KaramayASPProjectModellingofPilotAreaPerformance(SPE39610and64726)SomeCommentsonASPASPrequiresspecialcrudeoilstoimproveperformancesASPslugcostlessbutothercostswouldbesubstantial(treatinginjectionbrineandproducedfluids)Lowsurfactantconcentration(<0.5%active)SPformulationsareavailablenowSomeASPprojectsmaybejustSPwithAorjustPHarryL.ChangChemicalInjectionFacilitiesSPSWvs.SPMWinjectionfacilitiesLarge-scalepolymerdispersion/mixingLarge-scaleASPinjectionfacilitiesEmulsiontreatmentfacilitiesFullyautomaticmodularunitsforpilottestingHarryL.ChangAPolymerTestInjectionSite,SPSWFacilitiesSPMWPolymerinjectionpumpsSpec.:16Mpa,4m3/hr,And5000mg/lpolymerSPMWPolymerinjectionsystemSpec.:16Mpa,60m3/hr,polymerconc.,
1000mg/l,27injectionwellsST200508SPELogo3940Large-ScalePolymerDispersion/MixingPolymerDispersionPolymerMixingASPInjectionUnitsPriortoShippingAnASPInjectionStationwith70WellsProducedFluidTreatmentFacilitiesASPProducedFluidTreatment,24,000m3/d
AFullyAutomaticModularPre-FactoryTestedASPPilotInjectionFacility
DesignedRate:
640m3/dayDesignedPressure:
12MpaChemicalProcessingIncludes:Drypolymerhandling,processing,&maturationDrysodaashhandling,processing,&dissolutionSurfactanthandling&meteringWaterconditioningchemicals(oxygenscavengerandbiocide)NitrogenblanketAutomation:Allen-BradleyPLCbasedwithfullPIDLoopcontrolforaccuratechemicalrecipecontrolanddatacollectionSpecialSystemsIncluded:
R-Owatersoftening
Feremovalsystem
HeatexchangersystemforhightempfluidinjectionSPELogo46APolymerHandlingSystemDesignedbyChemorTechandFabricatedbyDafeng/COTinChinaST200508SPELogo48ST200508SPELogo49ST200508SPELogo50ST200508SPELogo51SOMECONTROVERTIALISSUESPolymerdispersionIsfullyhydrationonthesurfacenecessary?areoxygenscavengerandnitrogenblanketnecessary?Polymerfloodingvs.weakgelsASPvs.SPIsASPthefuture?WhySPhasnotbeenemphasized?ASPandSPSlugAqueousPhaseStability/Clarity?HarryL.ChangChallengesNewpolymersforhightemperatures(>90oCModelingpolymervisco-elasticeffectsLowMWpolymersforlowperm.reservoirsSurfactantswithlowadsorptionandotheradditivesLowcostandeffectiveemulsionbreakersNewscalepreventiontechnologiesHarryL.ChangSummaryAlargenumbera
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