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毛义军

领域:高端装备制造产业 学校:华中科技大学职称:教授

气动力学和气动声学的理论研究流动、振动和噪声的数值和实验研究高效低噪声叶轮机械设计方法及节能降噪技术...

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教育背景

09/2007-12/2010:西安交通大学能源与动力工程学院,博士生
03/2006-07/2007:中冶赛迪工程技术股份有限公司,助理工程师
09/2003-02/2006:西安交通大学能源与动力工程学院,硕士生(免试保送)
09/1999-07/2003:华中科技大学能源与动力工程学院&法学院,本科生(工学&法学双学位)

工作经历

07/2019-现在:华中科技大学航空航天学院教授
01/2014-06/2019:西安交通大学能源与动力工程学院,副教授、博士生导师
04/2017-03/2019:Rolls-Royce University Technology Centre in Gas Turbine Noise, University of Southampton, Research Fellow
08/2015-2016/07:Aerodynamics and Flight Mechanics Group, University of Southampton, Academic Visitor Supported by CSC, NSFC & Newton Fund.
03/2011-12/2013:西安交通大学能源与动力工程学院,讲师

项目课题经历

研究项目及成果应用
1.基础研究方面承担的国家及国际合作交流项目
国家自然科学基金项目:旋转叶片矢量气动声学方法的研究及应用。
国家自然科学基金项目:非紧凑弹性叶片的噪声机理及控制研究。
国家自然科学基金项目:通孔泡沫金属材料控制离心压缩机尾迹和噪声的研究。
教育部博士点基金项目:叶片式流体机械气动声场的高精度快速预测方法研究和实验验证。
国家自然科学基金和英国皇家学会(RoyalSociety)NewtonFund联合资助国际合作交流项目:叶片壁面压力脉动的高精度数值仿真与建模(High-fidelitysimulationsandmodellingofwallpressureonbladesurfaces)。
InnovateUKProject:ACAPELLA-Aeroacousticpredictioncapabilitiesforuseinmulti-disciplinaryoptimization。
英国RoyalSociety国际合作交流项目:Rotornoisepropagationinlinedductscontainingviscousswirlingshearflow。
2.应用研究方面承担的企业产学研合作项目
与沈鼓、中船重工、徐州重工、康明斯、美的、格力、海尔、华为、顺威等企业的产学研合作项目等,研究成果在多种领域的产品中实现节能降噪。透平压缩机降噪技术研究成果获中国产学研合作创新成果一等奖。

论文、成果、著作等

主要学术论文和著作(*通讯作者)

1.国际著名期刊论文
发表SCI论文超过45篇,其中39篇以第一/通讯作者发表,大部分发表在本领域的国际著名期刊上,其中包括AIAAJournal(11篇,中国大陆学者排名第3)等。部分论文如下:
(1)气动力学和气动声学的理论研究
[1]MaoYijun*,HuZhiwei,XuChen,GhorbaniaslGhader.Vectoraeroacousticsforauniformmeanflow:acousticvelocityandvorticalvelocity.AIAAJournal.2018,56(7):2782-2793.
[2]XuChen,MaoYijun*,HuZhiwei,GhorbaniaslGhader.Vectoraeroacousticsforauniformmeanflow:acousticintensityandacousticpower.AIAAJournal.2018,56(7):2794-2805.
[3]MaoYijun*,TangHongtao,XuChen.Vectorwaveequationofaeroacousticsandacousticvelocityformulationsforquadrupolesource.AIAAJournal.2016,54(6):1922-1931.
[4]MaoYijun*,CaiJiancheng,GuYuanyuan,QiDatong.Directevaluationofacousticintensityvectorfieldaroundimpedancescatteringbody.AIAAJournal.2015,53(5):1362-1371.
[5]MaoYijun*,ZhangQunlin,XuChen,QiDatong.Twotypesoffrequency-domainacoustic-velocityformulationsforrotatingthicknessandloadingsources.AIAAJournal.2015,53(3):713-722.
[6]MaoYijun*,XuChen,QiDatong.Computationofinstantaneousandtime-averagedactiveacousticintensityfieldaroundrotatingsource.JournalofSoundandVibration.2015,337:95-115.
[7]MaoYijun*,HuZhiwei.Acousticanalogyformultiphaseormulticomponentflow.ASMEJournalofVibrationandAcoustics.2018:140(2):021006.
(2)流动、振动和噪声的数值和实验研究
[8]MaoYijun*,HuZhiwei,GuYuanyuan.Efficientmethodtopredictrotornoisescatteredbyanaxisymmetricbody.AIAAJournal.2017,55(10):3458-3466.
[9]MaoYijun*,XuChen.Acceleratedmethodforpredictingacousticfarfieldandacousticpowerofrotatingsource.AIAAJournal.2016,54(2):603-615.
[10]MaoYijun*,GuYuanyuan,XuChen.Validationoffrequency-domainmethodtocomputenoiseradiatedfromrotatingsourceandscatteredbysurface.AIAAJournal.2016,54(4):1188-1197.
[11]XuChen,MaoYijun*,HuZhiwei.Improvedequivalentsourcemethodtopredictsoundscatteredbysolidsurfaces.AIAAJournal.2019,57(2):513-520.
[12]ZhangQunlin,MaoYijun*,QiDatong.Analyticalmodellingofthevibro-acousticresponseofadouble-walledcylindricalshellwithmicro-perforationexcitedbyturbulentboundarylayerpressurefluctuations.ASMEJournalofVibrationandAcoustics.2018,140(2):021012.
[13]ZhangQunlin,MaoYijun*,QiDatong.Effectofperforationonthesoundtransmissionthroughadouble-walledcylindricalshell.JounalofSoundandVibration.2017,410:344-363.
[14]HanFenghui,WangZhe,MaoYijun,ZhangYiyun,TanJiajian.Large-scaleflowmeasurementsandanalysisforradialinletsofindustrialcentrifugalcompressorsbasedonmulti‑holeprobe.InternationalJournalofPrecisionEngineeringandManufacturing.2019,20:79-92.
(3)高效低噪声叶轮机械设计方法及节能降噪技术
[15]MaoYijun*,XuChen.Analyticalacousticpowerspectrumformulationsforrotatingmonopoleanddipolepointsources.ASMEJournalofVibrationandAcoustics.2016,138(2):021009.
[16]WenXuanfeng,MaoYijun*,YangXin,QiDatong.Designmethodofthevoluteprofileofasquirrelcagefanwithspacelimitation.ASMEJournalofTurbomachinery.2016,138(8):081001.
[17]XuChen*,MaoYijun,HuZhiwei.Controlofcylinderwakeflowandnoisethroughadownstreamporoustreatment.AerospaceScienceandTechnology.2019,88:233-243.
[18]XuChen,MaoYijun*,HuZhiwei.Numericalstudyofpore-scaleflowandnoiseofanopencellmetalfoam.AerospaceScienceandTechnology.2018.82:185-198.
[19]XuChen,MaoYijun*.Experimentalinvestigationofmetalfoamforcontrollingcentrifugalfannoise.AppliedAcoustics.2016,104:182-192.
[20]ZhouHuihui,MaoYijun*,ZhangQunlin,ZhaoCun,QiDatong,DiaoQuan.Vibro-acousticsofapipelinecentrifugalCompressor,PartI,experimentalstudy.AppliedAcoustics.2018,131:112-128.
[21]ZhangQunlin,MaoYijun*,ZhouHuihui.Vibro-acousticsofapipelinecentrifugalCompressor,PartII,controlwiththemicro-perforatedpanel.AppliedAcoustics.2018,132:152-166.
2.著作:
[1]祁大同,李景银,闻苏平,秦国良,毛义军.离心压缩机原理.机械工业出版社,2018.

专利、著作版权等

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