[1] EdmondsRG,SteeleRC,WilliamsJT,etal.Ultra-LowNOxAdvancedVortexCombustor[R].ASME2006-GT-90319.
[2] AgarwalKK,KrishnaS,RavikrishnaRV.MixingEn.hancementinaCompactTrappedVortexCombustor[J].CombustionScienceandTechnology,2013,185(3):363-378.
[3] HsuKY,GossLP,RoquemoreWM.CharacteristicsofaTrapped-VortexCombustor[J].JournalofPropul.sionandPower,1998,14(1):57-65.
[4] JinY,HeX,ZhangJ,etal.NumericalInvestigationonFlowStructuresofaLaboratory-ScaleTrappedVor.texCombustor[J].AppliedThermalEngineering,2014,66(1):318-327.
[5] KulshreshthaDB,ChanniwalaSA.TrappedVortexCombustionChamber:DesignandExperimentalInvesti.gationsUsingHydrogenasFuel[J].JournaloftheInsti.tutionofEngineers(India):SeriesC,2014,95(1):69-75.
[6] 孙海俊,曾卓雄,徐义华,等.横向射流对凹腔湍流特性影响的数值模拟[J].推进技术,2014,35(1):54-61.(SUNHai-jun,ZENGZhuo-xiong,XUYi-hua,etal.NumericalSimulationofTransverseInjec.tiononTurbulenceCharacteristicsinCavity[J].Jour.nalofPropulsionTechnology,2014,35(1):54-61.)
[7] 邓洋波,刘世青,钟兢军.AVC中钝体布置与燃烧室流动特性研究[J].工程热物理学报,2008,29(8):1415-1418.
[8] 邓洋波,刘世青,钟兢军.先进旋涡燃烧室流动与燃烧特性分析[J].航空动力学报,2009,24(3):488-493.
[9] 邓洋波,刘世清,钟兢军.先进旋涡燃烧室燃烧特性数值模拟[J].大连海事大学学报,2008,34(3):21-24.
[10] 王璐.某型驻涡燃烧室冷却技术研究[D].南京:南京航空航天大学,2012.
[11] 张荣春,樊未军,宋双文,等.驻涡燃烧室发散冷却方案试验[J].航空动力学报,2011,26(12):2667-2675.
[12] 过增元.换热器中的场协同原则及其应用[J].机械工程学报,2003,39(12):1-9.
[13] 刘伟,刘志春,马雷.多场协同原理在管内对流强化传热性能评价中的应用[J].科学通报,2012,57(10):867-874.
[14] 王志凯,曾卓雄,徐义华.先进旋涡燃烧室后钝体开口结构的数值研究[J].推进技术,2014,35(6):809-814.(WANGZhi-kai,ZENGZhuo-xiong,XUYi-hua.NumericalSimulationofOpenStructureoftheRearBluntBodyinAdvancedVortexCombustor[J].JournalofPropulsionTechnology,2014,35(6):809-814.)
[15] SinghalA,RavikrishnaRV.SingleCavityTrappedVortexCombustorDynamics.Part1:Experiments[J].InternationalJournalofSprayandCombustionDynam.ics,2011,3(1):23-44.
[16] TaoWQ,HeYL,WangQW,etal.AUnifiedAnaly.sisonEnhancingSinglePhaseConvectiveHeatTransferwithFieldSynergyPrinciple[J].InternationalJournalofHeatandMassTransfer,2002,45(24):4871-4879.
[17] MengJA,LiangXG,LiZX.FieldSynergyOptimiza.tionandEnhancedHeatTransferbyMulti-LongitudinalVortexesFlowinTube[J].InternationalJournalofHeatandMassTransfer,2005,48(16):3331-3337.
[18] 刘伟,刘志春,过增元.对流换热层流流场的物理量协同与传热强化分析[J].科学通报,2009,54(12):1779-1785.
[19] 冷学礼,张冠敏,田茂诚,等.场协同原理在对流换热中的应用方法[J].热能动力工程,2009,24(3):352-354.
[20] 何雅玲,雷勇刚,田丽亭,等.高效低阻强化换热技术的三场协同性探讨[J].工程热物理学报,2009,30(11):1904-1906.(编辑:梅瑛)
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