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中国石油大学华东石油工程学院导师教师师资介绍简介-王志远教授

本站小编 Free考研考试/2020-11-24

?姓名:王志远 ?职称:教授

?单位:海洋油气与水合物研究所 ?最高学历/学位:博士研究生
?学科:海洋油气工程学科,石油与天然气工程领域 ?所学专业:油气井工程
?电子邮箱:wangzy1209@126.com
?联系电话:(Office)
?地址邮编:山东省青岛市经济技术开发区长江西路66号石油工程学院海洋油气工程系B709室,266580
?个人主页:
学习与工作经历
2000-2004年中国石油大学(华东)石油工程学院本科石油工程;
2004-2006年中国石油大学(华东)石油工程学院硕士油气井工程;
2006-2009年中国石油大学(华东)石油工程学院博士油气井工程;
2009-2011年中国石油大学(华东)地球科学与技术学院博士后地质资源与地质工程;
2014.09-2015.09美国塔尔萨大学(TheUniversityofTulsa)访问****。
研究方向
油气井工程、海洋石油工程、多相流理论及应用,天然气水合物开发:
(1)复杂条件下的井筒压力控制
(2)钻井水力学
(3)深水井控理论及应用
(4)深水井筒温度压力场预测技术
(5)深水测试及水合物防治
(6)欠平衡及控制压力钻井
(7)超临界二氧化碳钻井、压裂过程中的相态控制
(8)智能完井优化设计
(9)海域天然气水合物开发技术
学术兼职
(1)首届国际水合物青年论坛主席
(2)SPE协会全球钻井工程奖评委会委员
(3)SPE协会亚太油气会议组委会委员
(4)国家科技部十三五重点研发计划项目评审专家
(5)中国石油学会海洋工程工作部常务委员
(6)石油工程师协会(SPE)会员
(7)《JournalofHydrodynamics》编委(SCI期刊)
(8)《Sim.Trans.ofSCS》(SCI期刊)客座主编
(9)《JournalofHydrodynamics》、《J.Petrol.ScienceandEngineering》、《EnergyConversion&Management》、《InternationalJournalofGreenhouseGasControl》、《ChemicalEngineering&Technology》、《JournalofNaturalGasScience&Engineering》等国际SCI期刊审稿人
(10)《中国石油大学学报(自然科学版)》、《水动力学研究与进展》、《中国海上油气》编委
(11)《石油勘探与开发》、《天然气工业》、《石油钻探技术》、《中国海上油气》等国内期刊审稿专家
(12)第十三届全国水动力学学术会议暨第二十六届全国水动力学研讨会分会场主持人。

主讲课程
本科生课程:海洋钻井工程
研究生课程:深水钻井工程、海洋油气工程、深水油气工程理论与技术进展

指导研究生
博士
2017级潘少伟
2018级张剑波、娄文强
2019级仉志、张洋洋、童仕坤、豆宁辉
2020级刘徽
硕士
2014级赵阳、潘少伟
2015级张剑波、邓智铭、胡伟鹏
2016级于璟、郑凯波、陈远鹏
2017级娄文强、刘徽、陈旺、王泽、刘汉桥、袁凯鹏
2018级都凯、郭兵、张超、仉志、童仕坤
2019级弓正刚、郭宇堃、李迎超、范明、马楠、孔庆文
2020级裴继昊、关立臣、杨贺民、陈刚、刘晓、李鹏飞

承担科研课题
承担省部级以上代表性课题14项
1.天然气水合物钻采井筒多相流动障碍形成机制与安全控制方法,国家自然科学基金重大项目课题,370万元,2020年-2024年,负责人
2.海域天然气水合物试采工程基础及关键技术,中石油重大科技项目,4291万元,2019年-2023年,负责人
3.海域天然气水合物工程基础理论研究室平台建设,中石油科技基础条件平台建设项目,4444万元,2019年-2021年,负责人
4.深水气井测试环雾流条件下天然气水合物流动障碍形成机制,国家自然科学基金面上项目,60万元,2020年-2023年,负责人
5.油气井多相流动理论及应用,山东省****基金项目,60万元,2017年-2020年,负责人
6.陵水25区块开发井井筒流动保障技术研究,中海油外委课题,200.9万,2020年-2022年,负责人
7.油气井多相流动理论及应用,国家优青基金项目,130万元,2017年-2019年,负责人
8.极地冰区钻井防寒工艺技术研究,国家重点研发计划,130万元,2016年-2019年,负责人
9.深水钻井非稳态多相流动规律与井筒压力控制方法,国家973项目,755万元,2015年-2019年,第二负责人
10.热流体压裂天然气水合物储层裂缝扩展基础理论研究,山东省自然科学基金面上项目,15万元,2016年-2019年,负责人
11.智能井完井方式优化技术,国家863课题,240万元,2013年-2016年,负责人
12.陵水17-2气田开发井生产期间流动保障研究,中海油项目,60万,2017年,负责人
13.页岩气储层超临界二氧化碳压裂裂缝中支撑剂输送机理研究,国家自然基金青年基金项目,25万元,12年-15年,负责人
14.普光气田高陡构造钻井漏喷同存环空压力控制机理研究,山东省自然科学基金项目,3万元,2011年-2013年,负责人

获奖情况
1.《海洋钻井井筒安全压力设计方法及关键技术》,海洋科技进步二等奖,海洋工程咨询协会,2017年,1/15
2.《深部复杂压力体系地层井筒压力安全控制技术及应用》,中国安全生产协会第一届安全科技进步二等奖,省部级,2019年,1/7
3.《多组分多相复杂流动理论及其在油气井工程中的应用》,国家能源科技进步奖一等奖,2013年,3/15
4.《复杂钻井工况下井筒压力精确控制与工作液关键技术》,中国石油和化学工业联合会科技进步一等奖,省部级,2016年,3/15;
5.《复杂压力体系井筒安全高效构建关键技术及应用》,山东省科学技术进步二等奖,省部级,2019年3/9
6.《七组分井筒多相流动计算技术及应用》,山东省科技进步一等奖,省部级,2009年,4/11;
7.《复杂环境下油气生产管柱与集输管道安全保障关键技术及应用》,中国石油和化学工业联合会科技进步一等奖,省部级,2018年,5/15

荣誉称号
1.国家“****”科技创新领军人才
2.教育部****奖励计划青年****
3.国家优秀青年科学基金获得者
4.山东省泰山********
5.孙越崎青年科技奖获得者
6.山东省有突出贡献的中青年科学家
7.山东省青年科技奖获得者
8.山东省****科学基金获得者

著作
出版专著2部,发表学术论文160余篇,其中SCI/EI收录100余篇
1.《深水气井天然气水合物防治理论与技术研究》,王志远、孙宝江、高永海著,科学出版社,2020
2.《NaturalGasHydrateManagementinDeepwaterGasWell》,ZhiyuanWang?BaojiangSun?YonghaiGao,Springer,2020
论文
[1]Wang,Z.,Tong,S.,Wang,C.,Zhang,J.,Fu,W.,&Sun,B.(2020).Hydratedepositionpredictionmodelfordeep-watergaswellsundershut-inconditions.Fuel,275,117944.
[2]Wang,Z.,Liu,H.,Zhang,Z.,Sun,B.,Zhang,J.,&Lou,W.(2020).Researchontheeffectsofliquidviscosityondropletsizeinverticalgas–liquidannularflows.ChemicalEngineeringScience,115621.
[3]WangZ,LouW,SunB,etal.AmodelforpredictingbubblevelocityinyieldstressfluidatlowReynoldsnumber[J].ChemicalEngineeringScience,2019,201:325-338.
[4]WangZ,YuJ,ZhangJ,etal.Improvedthermalmodelconsideringhydrateformationanddepositioningas-dominatedsystemswithfreewater[J].Fuel,2019,236:870-879.
[5]WangZ,ZhaoY,ZhangJ,etal.QuantitativelyAssessingHydrate-BlockageDevelopmentDuringDeepwater-Gas-WellTesting[J].SPEJournal,2018,23(04):1,166-1,183.
[6]WangZ,LiaoY,ZhangW,etal.Coupledtemperaturefieldmodelofgas-hydrateformationforthermalfluidfracturing[J].AppliedThermalEngineering,2018,133:160-169.
[7]WangZ,ZhaoY,ZhangJ,etal.Flowassuranceduringdeepwatergaswelltesting:Hydrateblockagepredictionandprevention[J].JournalofPetroleumScienceandEngineering,2018,163:211-216.
[8]WangZ,ZhangJ,SunB,etal.Anewhydratedepositionpredictionmodelforgas-dominatedsystemswithfreewater[J].ChemicalEngineeringScience,2017,163:145-154.
[9]WangZ,ZhangJ,ChenL,etal.Modelingofhydratelayergrowthinhorizontalgas-dominatedpipelineswithfreewater[J].JournalofNaturalGasScience&Engineering,2017,50:364–373.
[10]WangZ,SunB,SunX.Calculationoftemperatureinfractureforcarbondioxidefracturing[J].SPEJournal,2016,21(05):1491-1500.
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[15]WangZ,SunB,WangJ,etal.Experimentalstudyonthefrictioncoefficientofsupercriticalcarbondioxideinpipes[J].InternationalJournalofGreenhouseGasControl,2014,25(6):151-161.
[16]WANGZ,SUNB.Deepwatergaskicksimulationwithconsiderationofthegashydratephasetransition[J].JournalofHydrodynamics,Ser.B,2014,26(1):94-103.
[17]WangZ,SunB,KeK.Pre-SpudMudLossFlowRateinSteeplyFoldedStructures[J].Oil&GasScience&Technology,2013,69(7):1269-1281.
[18]WangZ,SunB.Annularmultiphaseflowbehaviorduringdeepwaterdrillingandtheeffectofhydratephasetransition[J].PetroleumScience,2009,6(1):57-63.
[19]He,H.,Sun,B,Wang,Z,Liu,Y.,&Sun,X.(2020).Aconstitutivemodelforpredictingthesolubilityofgasesinwaterathightemperatureandpressure.JournalofPetroleumScienceandEngineering,107337.
[20]Zhang,J.,Wang,Z.,Duan,W.,Fu,W.,Sun,B.,Sun,J.,&Tong,S.(2020).Real-TimeEstimationandManagementofHydratePluggingRiskDuringDeepwaterGasWellTesting.SPEJournal.
[21]Sun,B.,Zhang,Z.,Wang,Z.,Pan,S.,Wang,Z.,&Chen,W.(2020).ParameterPredictionMethodforSubmarineCuttingsPilesinOffshoreDrilling.SPEJournal.
[22]Fang,T.,Zhang,Y.,Yan,Y.,Wang,Z.,&Zhang,J.(2020).MolecularinsightintotheoilextractionandtransportinCO2floodingwithreservoirdepressurization.InternationalJournalofHeatandMassTransfer,148,119051.
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[24]Deng,X.,Pan,S.,Zhang,J.,Wang,Z.,&Jiang,Z.(2020).Numericalinvestigationonabnormallyelevatedpressureinlaboratory-scaleporousmediacausedbydepressurizedhydratedissociation.Fuel,271,117679.
[25]Lou,W.,Wang,Z.,Pan,S.,Sun,B.,Zhang,J.,&Chen,W.(2020).PredictionmodelandenergydissipationanalysisofTaylorbubblerisevelocityinyieldstressfluid.ChemicalEngineeringJournal,125261.
[26]Liao,Y.,Sun,X.,Sun,B.,Wang,Z.,Zhang,J.,&Lou,W.(2020).Wellheadbackpressurecontrolstrategiesandoutflowresponsecharacteristicsforgaskickduringmanagedpressuredrilling.JournalofNaturalGasScienceandEngineering,75,103164.
[27]Fu,W.,Wang,Z.,Zhang,J.,&Sun,B.(2020).Methanehydrateformationinawater-continuousverticalflowloopwithxanthangum.Fuel,265,116963.
[28]Deng,X.,Feng,J.,Pan,S.,Wang,Z.,Zhang,J.,&Chen,W.(2020).Animprovedmodelforthemigrationoffluidscausedbyhydratedissociationinporousmedia.JournalofPetroleumScienceandEngineering,106876.
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[32]SunB,FuW,WangZ,etal.Characterizingtherheologyofmethanehydrateslurryinahorizontalwater-continuoussystem[J].SPEJournal,2019.
[33]SunX,LiaoY,WangZ,etal.GeothermalexploitationbycirculatingsupercriticalCO2inaclosedhorizontalwellbore[J].Fuel,2019,254:115566.
[34]FuW,WangZ,ZhangJ,etal.Investigationofrheologicalpropertiesofmethanehydrateslurrywithcarboxmethylcellulose[J].JournalofPetroleumScienceandEngineering,2019:106504.
[35]LiaoY,SunX,SunB,etal.Transientgas–liquid–solidflowmodelwithheatandmasstransferforhydratereservoirdrilling[J].InternationalJournalofHeatandMassTransfer,2019,141:476-486.
[36]LiaoY,SunX,SunB,etal.CoupledthermalmodelforgeothermalexploitationviarecyclingofsupercriticalCO2inafracture–wellssystem[J].AppliedThermalEngineering,2019:113890.[19]ZhangJ,WangZ,LiuS,etal.Predictionofhydratedepositioninpipelinestoimprovegastransportationefficiencyandsafety[J].AppliedEnergy,2019,253:113521.
[37]ZhangJ,WangZ,SunB,etal.Anintegratedpredictionmodelofhydrateblockageformationindeep-watergaswells[J].InternationalJournalofHeatandMassTransfer,2019,140:187-202.
[38]DengX,PanS,WangZ,etal.ApplicationoftheDarcy-Stefanmodeltoinvestigatethethawingsubsidencearoundthewellboreinthepermafrostregion[J].AppliedThermalEngineering,2019,156:392-401.
[39]FuW,WangZ,YueX,etal.ExperimentalStudyofMethaneHydrateFormationinWater-continuousFlowLoop[J].Energy&Fuels,2019.
[40]FuW,WangZ,DuanW,etal.Characterizingmethanehydrateformationinthenon-Newtonianfluidflowingsystem[J].Fuel,2019,253:474-487.
[41]SunB,YangC,WangZ,etal.Methodologyforpressuredropofbubblyflowbasedonenergydissipation[J].JournalofPetroleumScienceandEngineering,2019,177:432-441.
[42]FuW,WangZ,SunB,etal.Multiplecontrollingfactorsformethanehydrateformationinwater-continuoussystem[J].InternationalJournalofHeatandMassTransfer,2019,131:757-771.
[43]WangJ,WangZ,SunB,etal.OptimizationdesignofhydraulicparametersforsupercriticalCO2fracturinginunconventionalgasreservoir[J].Fuel,2019,235:795-809.
[44]SunB,ZhangZ,WangZ,etal.Interfacialfrictionfactorpredictioninverticalannularflowbasedontheinterfaceroughness[J].ChemicalEngineering&Technology,2018,41(9):1833-1841.
[45]WangM,WangJ,FangT,YangY,WangZ,etal.ShapeTransitionofWater-in-CO2ReverseMicellesControlledbySurfactantMidpiece[J].PhysicalChemistryChemicalPhysics,2018,20(22):15535-15542.
[46]SunB,WangJ,WangZ,etal.Calculationofproppant-carryingflowinsupercriticalcarbondioxidefracturingfluid[J].JournalofPetroleumScienceandEngineering,2018,166:420-432.
[47]SunX,WangZ,SunB,etal.ResearchonhydrateformationrulesintheformationsforliquidCO2fracturing[J].JournalofNaturalGasScienceandEngineering,2016,33:1390-1401.
[48]WangN,SunB,WangZ,etal.Numericalsimulationoftwophaseflowinwellboresbymeansofdriftfluxmodelandpressurebasedmethod[J].JournalofNaturalGasScienceandEngineering,2016,36:811-823.
[49]ChenweiLiu,ZhiyuanWang,JinlinTian,etal.(2020).Fundamentalinvestigationoftheadhesionstrengthbetweencyclopentanehydratedepositionandsolidsurfacematerials.ChemicalEngineeringScience,217,115524.
[50]Lou,W.,Wang,Z.,Pan,S.,Sun,B.,Zhang,J.,&Chen,W.(2020).PredictionmodelandenergydissipationanalysisofTaylorbubblerisevelocityinyieldstressfluid.ChemicalEngineeringJournal,125261.
[51]JianboZhang,ZhiyuanWang,WenguangDuan,etal.(2020).Real-TimeEstimationandManagementofHydratePluggingRiskDuringDeepwaterGasWellTesting.SPEJournal,
[52]Fu,W.,Wang,Z.,Chen,L.,&Sun,B.(2020).ExperimentalInvestigationofMethaneHydrateFormationintheCarboxmethylcellulose(CMC)AqueousSolution.SPEJournal.
[53]Fu,W.,Wang,Z.,Sun,B.,Xu,J.,Chen,L.,&Wang,X.(2020).RheologicalPropertiesofMethaneHydrateSlurryinthePresenceofXanthanGum.SPEJournal.
[54]Fu,W.,Wang,Z.,Zhang,J.,&Sun,B.(2020).Methanehydrateformationinawater-continuousverticalflowloopwithxanthangum.Fuel,265,116963.
[55]ZhangZ,WangZ,GaoY,etal.Experimentalstudyontheeffectofsurfactantsonthecharacteristicsofgascarryingliquidinverticalchurnandannularflows[J].JournalofPetroleumScienceandEngineering,2019,180:347-356.
[56]ZhangZ,WangZ,LiuH,etal.Experimentalstudyonentraineddropletsinverticaltwo-phasechurnandannularflows[J].InternationalJournalofHeatandMassTransfer,2019,138:1346-1358.
[57]ZhangZ,WangZ,LiuH,etal.Experimentalstudyonbubbleanddropletentrainmentinverticalchurnandannularflowsandtheirrelationship[J].ChemicalEngineeringScience,2019,206:387-400.
[58]ZhangS,WangZ,SunB,etal.Patterntransitionofagas–liquidflowwithzeroliquidsuperficialvelocityinaverticaltube[J].InternationalJournalofMultiphaseFlow,2019,118:270-282.
[59]SunX,WangZ,LiaoY,etal.GeothermalenergyproductionutilizingaU-shapedwellincombinationwithsupercriticalCO2circulation[J].AppliedThermalEngineering,2019,151:523-535.
[60]FuW,WangZ,SunB,etal.Amasstransfermodelforhydrateformationinbubblyflowconsideringbubble-bubbleinteractionsandbubble-hydrateparticleinteractions[J].InternationalJournalofHeatandMassTransfer,2018,127:611-621.
[61]SunX,WangZ,SunB,etal.Modelingofdynamichydrateshellgrowthonbubblesurfaceconsideringmultiplefactorinteractions[J].ChemicalEngineeringJournal,2018,331:221-233.
[62]WangX,WangZ,DengX,etal.CoupledthermalmodelofwellboreandpermafrostinArcticregions[J].AppliedThermalEngineering,2017,123:1291-1299.
[63]WangJ,WangZ,SunB.ImprovedequationofCO2Joule–Thomsoncoefficient[J].JournalofCO2Utilization,2017,19:296-307.
[64]He,H.,Sun,B.,Wang,Z.,Liu,Y.,&Sun,X.(2020).Aconstitutivemodelforpredictingthesolubilityofgasesinwaterathightemperatureandpressure.JournalofPetroleumScienceandEngineering,107337.
[65]Sun,B.,Zhang,Z.,Wang,Z.,Pan,S.,Wang,Z.,&Chen,W.(2020).ParameterPredictionMethodforSubmarineCuttingsPilesinOffshoreDrilling.SPEJournal.
[66]GaoY,ChenY,WangZ,etal.Experimentalstudyonheattransferinhydrate-bearingreservoirsduringdrillingprocesses[J].OceanEngineering,2019,183:262-269.
[67]LiuZ,SunB,WangZ,etal.NewMass-TransferModelforPredictingHydrateFilmThicknessattheGas–LiquidInterfaceunderDifferentThermodynamics–Hydrodynamics-SaturationConditions[J].TheJournalofPhysicalChemistryC,2019,123(34):20838-20852.
[68]SunB,LiuZ,WangZ,etal.Experimentalandmodelinginvestigationsintohydrateshellgrowthonsuspendedbubblesconsideringporeupdatingandsurfacecollapse[J].ChemicalEngineeringScience,2019.
[69]WangX,SunB,WangZ,etal.Coupledheatandmasstransfermodelofgasmigrationduringwellcementingthroughahydratelayerindeep-waterregions[J].AppliedThermalEngineering,2019:114383.
[70]ZhaoY,LiuS,WangZ,etal.Anadaptivepatternrecognitionmethodforearlydiagnosisofdrillstringwashoutbasedondynamichydraulicmodel[J].JournalofNaturalGasScienceandEngineering,2019,70:102947.
[71]ZhangZ,SunB,WangZ,etal.Wholewellboreliquidloadingrecognitionmodelforgaswells[J].JournalofNaturalGasScienceandEngineering,2018,60:153-163.
[72]SunX,SunB,WangZ,etal.Ahydrateshellgrowthmodelinbubbleflowofwater-dominatedsystemconsideringintrinsickinetics,massandheattransfermechanisms[J].InternationalJournalofHeatandMassTransfer,2018,117:940-950.
[73]SunB,WangX,WangZ,etal.Transienttemperaturecalculationmethodfordeep-watercementingbasedonhydrationkineticsmodel[J].AppliedThermalEngineering,2018,129:1426-1434.
[74]SunB,SunX,WangZ,etal.Effectsofphasetransitionongaskickmigrationindeepwaterhorizontaldrilling[J].JournalofNaturalGasScienceandEngineering,2017,46:710-729.
[75]WangJ,SunB,WangZ,etal.StudyonfiltrationpatternsofsupercriticalCO2fracturinginunconventionalnaturalgasreservoirs[J].GreenhouseGasesScience&Technology,2017,7(6):1126-1140.
[76]SunX,SunB,WangZ,etal.Anewmodelforhydrodynamicsandmasstransferofhydratedbubblerisingindeepwater[J].ChemicalEngineeringScience,2017,173:168-178.
[77]SunB,GuoY,WangZ,etal.Experimentalstudyonthedragcoefficientofsinglebubblesrisinginstaticnon-Newtonianfluidsinwellbore[J].JournalofNaturalGasScienceandEngineering,2015,26:867-872.
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专利
发明专利
1.Anti-settlingApparatusandMethodandApparatusforCheckingtheSame,andApparatusforPreventingSettlementofWell,2019.06.13,USA1,1/6
2.Controlmethodandcontroldevicefordrillingoperations,2019.07.02,US**B1,1/5
3.Homocentricsquares-shapedwellstructureformarinehydratereserverecoveryutilizinggeothermalheatandmethodthereof,2019.04.23,US**B1,2/6
4.Wellkillingmethodanddeviceforafracturedformationwithoutsafetypressurewindowbyfive-stepbullheading,2019.09.10,US**B1,4/7
5.防沉系统、校核方法、校核系统及防止目标井沉降的系统,2020.08.14,CNA,1/7;
6.用于钻井作业的控制方法及控制装置,2020.2.21,CNB,1/5
7.测量深水气井环空测试液保温性能的装置及方法,**,CNA,1/6
8.模拟冻土地带钻井的装置,2019.05.21,CNA,1/6
9.防沉装置及其校核方法和装置、防止井沉降的装置,2019.10.18,CNA,1/6
10.极地钻井平台井架保温加热实验装置及实验方法,2019-10-15,CNA,1/6
11.极地钻井平台井架保温装置及其设计方法,2019-10-15,CNA,1/6
12.天然气水合物开采过程中除砂除水装置及方法,2019.04.05,CNB,1/6
13.利用底层产气清除水合物井中出砂出水的装置及方法,2019.06.14,CNA,1/6
14.深水气井生产管路水合物堵塞早期监测装置及方法,2018.04.06,CNA,1/6
15.深水气井测试中天然气水合物堵塞监测装置及方法,2018.02.27,CNA,1/8
16.井下节流阀、深水气井测试系统及测试方法,2016.08.17,CNB,1/8
17.抑制酸性气体突发膨胀的井口回压确定方法,2015.05.27,CNB,1/7
18.深水气井测试用水合物自动防治装置与防治方法,2015.05.27,CNB,1/5
19.热流体压裂开采天然气水合物藏实验装置,2015.04.15,CNB,1/4
20.一种确定深水隔水管气举钻井注气量的方法,2014.12.03,CNB,1/2
21.热流体压裂开采天然气水合物装置及方法,2014.07.23,CNB,1/4
21.增加避台风期间海洋钻井安全作业周期的方法,2014.05.07,CNB,1/6
22.钻前预测高陡构造地层漏失速率的方法,2014.03.19,CNB,1/3
23.测量超临界二氧化碳压裂裂缝中流型分布的装置,2019-06-07,CNB,2/7
24.用于施加井口回压的双节流控制泥浆泵分流管汇及其方法,2014.02.19,CNB,2/6
25.基于钻井环空井筒多相流动计算的空压钻井方法,2013.08.28,CNB,2/7
26.力学特性检测装置以及力检测系统,2019-10-18,CNA,3/4
27.利用地热开采海洋水合物藏的回型井结构及方法,2019-08-13,CNB,3/7
28.救援井压井模拟实验装置及方法,2018-06-29,CNA,3/5
29.测量单元、溢流信息识别设备及方法,2017-02-15,CNA,3/4
30.深水双梯度钻井用海底井口压力指示及自动调节装置,2015-09-09,CNA,3/7
31.测量超临界二氧化碳压裂液流变性的装置及方法,2014-10-15,CNA,3/6
32.井喷无法关井情况下的地层压力确定方法,2014.06.25,CNB,3/7
33.一种控压钻井实验装置及其控制方法,2014-05-07,CNA,3/8
34.超临界二氧化碳携砂流动机理研究装置,2013.03.06,CNB,3/6
35.用于超临界二氧化碳定压比热测量的实验装置与方法,2013-12-11,CNA,3/6
36.用于无安全压力窗口裂缝性地层压井的五步压回法及设备,2019-04-16,CNA,4/7
37.超临界二氧化碳钻井井筒内相态的控制装置,2013.04.10,CNB,4/6
38.利用压裂开采海洋水合物藏的双L井结构及方法,2020.06.05,CNB,4/7
39.一种井底应力诱导卸荷钻头及其提高钻井速度方法,2020.09.01,CNA,4/8
40.控压钻井系统及其控制方法,2019-11-29,CNA,4/5
41.测量不同粘度下超临界二氧化碳压裂液节流系数的装置,2016-02-24,CNA,4/6
42.海水淡化的方法,2020.06.26,CNA,5/6
43.用于开采海洋水合物的双连通井结构及方法,2020-05-15,CNB,5/6
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47.一种用于提高水合物藏采收率的储层改造装置与方法,2020.06.16,CNA,6/8
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软件版权:
1.深水气井测试水合物防治软件系统1.0
2.深水钻井水力参数优化设计系统1.0
3.海洋钻井井控水力参数设计软件系统1.0
4.深水钻井井控过程模拟及设计软件V2.0
5.三高气井压井工艺参数计算软件系统
6.三高气井井筒压力预测软件V1.0
7.控制压力钻井多相流动参数计算及回压控制软件系统V1.0
8.欠平衡钻井水力计算软件系统5.6
9.环空充气欠平衡钻井水力计算软件系统5.5
10.柱塞气举动力学仿真软件V1.0
11.深水智能完井优化设计软件v1.0



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