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刘艳
2023-05-09 16:35
  • 刘艳
  • 刘艳 - 博士 教授 博导-大连理工大学-能源与动力学院-个人资料

近期热点

资料介绍

个人简历


个人简介
作为负责人承担国家自然科学基金项目和辽宁省自然科学基金项目。参与863项目和973项目。主要从事叶轮机械气动热力学方面的研究工作。在国内外学术期刊及国内外学术会议上发表论文40多篇。
教育经历
2000.10 2004.5 英国华威大学 计算流体力学 博士
1988.9 1991.3 大连理工大学 热能 硕士
1984.9 1988.7 大连理工大学 热力涡轮机 学士
工作经历
2008.12 至今 大连理工大学能动学院 教师
2006.3 2008.12 大连理工大学船舶学院 教师
2004.4 2005.9 英国威尔士大学 博士后
1991.4 2000.9 大连大学 教师
专利
一种闭式离心叶轮出口结构
一种闭式离心叶轮结构
潮流能增压海水淡化及发电装置
气体轴承-转子系统动态加载综合实验台
(新型)一种旋转机械动静间隙的螺旋密封结构
内π形气楔槽动静压复合气浮轴承
科研项目
跨声速涡轮叶片激波弱化方法研究, 其他课题, 2018/09/05, 进行
离心压缩机模型级静止部件流场和性能风洞实验台, 企事业单位委托科技项目, 2017/02/20-2018/09/30, 进行
大流量系数离心压缩机叶轮研发, 国际合作项目, 2014/01/01, 进行
汽轮机凝汽器流动和传热特性分析和优化, 企事业单位委托科技项目, 2017/01/19-2017/09/30, 进行
2X600MW机组烟气超低排放改造项目节能评估咨询服务项目, 企事业单位委托科技项目, 2016/12/25-2017/11/10, 进行
烷基化装置C6901压缩机扩能研发, 企事业单位委托科技项目, 2015/01/12-2015/06/30, 进行
科研奖励
中国机械工业科学技术进步奖
其他奖励
2018校教学优良奖 (2019年)

研究领域


涡轮气动设计、分析和实验;
离心压缩机气动设计、分析和实验;
涡轮叶片间隙泄漏及控制研究""

近期论文


[1]李志,刘艳,杨金广,徐乐,张敏.超声速涡轮叶型全局气动优化设计[J],推进技术,2018,40(5):1051-1057
[2]王杨,刘艳.旋转扩压器对通风机性能影响研究[J],热科学与技术,2018,17(3):253-258
[3]杨金广,徐乐,刘艳,张敏.基于反方法的高负荷涡轮动叶激波控制[J],推进技术,2018,39(6):1240-1249
[4]徐乐,杨金广,刘艳.基于S1流面粘性反问题的带分流叶片离心叶轮叶片反设计[A],航天第三信息网第39届技术交流会暨第3届空天动力联合会议,2018
[5]王继磊,杨金广,刘艳.小流量向心涡轮多目标优化设计[A],航天第三信息网第39届技术交流会暨第3届空天动力联合会议,2018
[6]王继磊,杨金广,刘艳,张天宸.Multi-objective optimization design of a centrifugal impeller[A],Chinese International Turbomachinery Conference,2018
[7]杨金广,张敏,刘艳,莫宝玺.环形涡轮动叶栅旋转效应数值研究[J],推进技术,2017,38(10):2280-2289
[8]Zhao, Peng-Fei,Liu, Yan,Wang, Xiao-Fang.Analysis of vortices and performance of different diffusers in a large mass flow coefficient centrifugal compressor[J],PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART A-JOURNAL OFPOWER AND ENERGY,2017,231(4):253-273
[9]Yang, J.,Liu, Y.,Wang, X.,Wu, H..An improved steady inverse method for turbomachinery aerodynamic design[J],INVERSE PROBLEMS IN SCIENCE AND ENGINEERING,2017,25(5):633-651
[10]赵鹏飞,刘艳,王晓放,孙玉莹,赵强.简化间隙泄漏结构对离心压缩机性能影响研究[J],风机技术,2017,1:1-6,75
[11]刘艳,张敏,张梦超,张天龙,贺樱.带冠喷气涡轮叶栅气动性能研究[J],工程热物理学报,2017,38(1):74-80
[12]赵广,苏钧聪,刘艳,宿晓辉.潮流能水轮机转子系统扭转振动特性研究[J],太阳能学报,2016,37(11):2922-2928
[13]王跃方,刘艳,郭婷.离心式压缩机叶轮非定常流动特性及动力响应研究进展[J],风机技术,2016,58(5):81-87
[14]Liu, Yan,Zhang, Min,Zhang, Tianlong,Zhang, Mengchao,He, Ying.Effect of Winglet-Shroud Tip With Labyrinth Seals on Aerodynamic Performance of a Linear Turbine Cascade[J],JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME,2016,138(7)
[15]Wang, Yuefang,Liu, Yan,Wang, Xuejun,Li, Hongkun,Jiang, Daren.RANDOM VIBRATION ANALYSIS FOR CENTRIFUGAL COMPRESSOR IMPELLERS WITH UNSTEADY AERODYNAMIC EXCITATIONS[A],ASME Turbo Expo: Turbine Technical Conference and Exposition,2016,7B-2016
[16]Yang, Jinguang,Liu, Yan,Wang, Xiaofang,Wu, Hu.3D VISCOUS INVERSE DESIGN OF TURBOMACHINERY USING ONE-EQUATION TURBULENCE MODEL[A],ASME Turbo Expo: Turbine Technical Conference and Exposition,2016,2C-2016
[17]Liu, Yan,Tao, Li-hua,Wang, Jian,Wang, Yang,Wang, Xue-jun,Wang, Wei.INFLUENCE OF REYNOLDS NUMBER ON THE PERFORMANCE OF PROCESS CENTRIFUGAL COMPRESSORS[A],ASME Turbo Expo: Turbine Technical Conference and Exposition,2016,2D-2016
[18]Zhao, Guang,Su, Xiaohui,Cao, Yao,Su, Juncong,Liu, Yan.Experiments on the hydrodynamic performance of horizontal axis tidal current turbine and desalination of sea water[J],4th Asia-Pacific Forum on Renewable Energy,2016,40(5,SI):600-609
[19]Liu, Yan,Zhang, Tian-Long,Zhang, Min,Zhang, Meng-Chao.Numerical and Experimental Investigation of Aerodynamic Performance for a Straight Turbine Cascade With a Novel Partial Shroud[J],JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME,2016,138(3)
[20]刘艳,陶丽桦,王键,王海伦,孙玉莹.空气压缩机模型级用于不同真实气体的气动性能研究[J],机械工程学报,2016,52(8):198-206
[21]刘艳.大流量系数离心压缩机叶轮与不同扩压器匹配性能研究[A],2016
[22]杨金广,刘艳.基于S1流面粘性反问题的离心压缩机叶轮改型设计[A],2016
[23]刘艳,张天龙,张敏,张梦超,陆华伟.带翼型围带涡轮叶栅冲角适应性的实验与数值研究[J],工程热物理学报,2016,37(5):980-987
[24]Zhao, Peng-Fei,Liu, Yan,Li, Hong-Kun,Wang, Xiao-Fang,Yang, Jin-Guang.The effect of impeller-diffuser interactions on diffuser performance in a centrifugal compressor[J],ENGINEERING APPLICATIONS OF COMPUTATIONAL FLUID MECHANICS,2016,10(1):565-577
[25]杨金广,刘艳.基于一维方法的轴流压气机喘振边界预测模型对比研究[A],2016
[26]刘艳.环形涡轮动叶栅旋转效应的数值研究[A],2016
[27]刘艳,杨金广.动叶叶顶结构对1.5级涡轮气动性能影响的数值研究[A],2016
[28]陶丽桦,王键,刘艳,刘啸.叶片载荷分布对离心叶轮气动性能影响的数值研究[J],风机技术,2015,57(6):13-20,92
[29]王键,刘艳,刘啸.叶片载荷分布对离心叶轮气动性能影响的数值研究[A],2015第二届中国国际风机学术会议,2015,1-9
[30]Li, Hongkun,Zhang, Xiaowen,Liu, Yan,Xu, Fujian,Zhou, Shuai.INVESTIGATION ON ACOUSTIC RESONANCE FOR DIFFERENT DIFFUSER AND EFFECT ON CENTRIFUGAL COMPRESSOR PIPELINE FAILURE[A],ASME Turbo Expo: Turbine Technical Conference and Exposition,2015,2C
[31]刘艳,王海伦,王键,王学军,汪创华.离心压缩机模型级尺寸缩放对性能影响数值研究[J],大连理工大学学报,2015,55(3):252-260
[32]刘艳.工程热物理会议[A],2015
[33]刘艳.带冠喷气涡轮叶栅气动性能研究[A],2015
[34]刘艳.加工倒角对离心叶轮性能影响的数值研究[A],2015
[35]刘艳,李宏坤,王晓放.半开式离心压缩机内部流动及压力脉动分析[A],2015
[36]刘艳,杨金广.涡轮叶栅叶顶间隙泄漏流动及控制研究进展[A],2015
[37]Naqavi, Iftekhar Z.,Tucker, Paul G.,Liu, Yan.Large-eddy simulation of the interaction of wall jets with external stream[J],INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW,2014,50:431-444
[38]赵广,宿晓辉,刘艳,韩清凯.EXPERIMENTS ON THE HYDRODYNAMIC PERFORMANCE OF HORIZONTAL AXIS TIDAL[A],4rd ASIA-PACIFIC FORUM ON RENEWABLE ENERGY(AFORE20014),2014
[39]刘盼年,刘艳,姜沃函,陆华伟.涡轮叶栅叶顶间隙泄漏流动实验研究[J],大连理工大学学报,2013,53(6):803-810
[40]刘艳,刘盼年,姜沃函,陆华伟,赵鹏飞.带围带的涡轮叶栅间隙泄漏流动与气动性能实验[J],航空动力学报,2013,28(10):2292-2301
[41]赵广,孙涛,田夫,刘艳,王巍,苑英奕,孟姝君.从学生视角看待工科院校实习经验得失[A],2013高等院校工作研讨会(CETCU 2013),2013,128-131
[42]赵广,郭嘉楠,刘艳,宿晓辉,孙涛,杨冉升.竖轴潮流能水轮机实验台设计及水动力性能测试[J],太阳能学报,2013,34(7):1271-1279
[43]Zhao Guang,Yang Ran-sheng,Liu Yan,Zhao Peng-fei.Hydrodynamic performance of a vertical-axis tidal-current turbine with different preset angles of attack[J],JOURNAL OF HYDRODYNAMICS,2013,25(2):280-287
[44]赵广,刘艳,宿晓辉,韩清凯.torsional vibration characteristics of Vertical axis tidal current turbine.[A],3rd ASIA-PACIFIC FORUM ON RENEWABLE ENERGY(AFORE2013). 2013, November 4-6th. Jeju, Korea.,2013
[45]Liu Yan,Zhao Peng-fei,Wang Qiang,Chen Zhao-hui.URANS COMPUTATION OF CAVITATING FLOWS AROUND SKEWED PROPELLERS[J],JOURNAL OF HYDRODYNAMICS,2012,24(3):339-346
[46]刘艳,赵鹏飞,王晓放.两种空化模型计算二维水翼空化流动的研究[J],大连理工大学学报,2012,52(2):175-182
[47]刘艳.Experimental and numerical investigation of the influence of shroud on aerodynamic performance of a turbine blade[A],2012
[48]刘艳,宿晓辉,赵广.Influence of preset angles of attack on hydrodynamic performance of a vertical-axis tidal-current turbine[A],2012
[49]宿晓辉,刘艳,张凯琳,赵镛,王巍,谢蓉,赵广.基于非结构化网格有限体积的LBM[J],大连理工大学学报,2012,52(6):809-815
[50]Liu, Yan,Wang, Qiang,Zhao, Peng-fei.The speed coefficient method based nuclear main pump design and CFD analysis[A],SSITE International Conference on Future Material Research and IndustryApplication (FMRIA 2011),2011,455-456:302-+
[51]Liu, Yan,Zhao, Peng-Fei,Su, Xiao-hui,Zhao, Guang.Numerical Study of Performances of Vertical Axis Tidal Turbines[A],SSITE International Conference on Future Material Research and IndustryApplication (FMRIA 2011),2011,455-456:296-+
[52]刘艳,姜沃函,董建华,姜晓霞,赵鹏飞.600MW直接空冷汽轮机组排汽装置流场数值模拟和结构改进[J],汽轮机技术,2011,53(5):339-341,368
[53]Zhang Meng,Wang Xiaofang,Liu Yan,Xu Shengli,Ye Zhong.Influence of Tooth Position and Clearances on Leakage in Labyrinth Seal in Turbine[A],Asia-Pacific Power and Energy Engineering Conference (APPEEC),2011
[54]赵广,田夫,刘艳.Dynamic Simulations of AP1000 Nuclear Main Pump Rotor System.[A],2011
[55]王晓放,刘艳.Influence of Rotor Axial Shifting and Clearance on Leakage in Stepped Seal in Steam Turbines[A],2011,3:94-100
[56]刘艳,赵鹏飞,周力,陈朝晖.RANS方法和升力面理论预报螺旋桨敞水性能比较研究[J],大连理工大学学报,2010,50(6):901-906
[57]刘艳,李宇峰,冀春俊.600MW空冷汽轮机组低压排汽缸流场模拟和结构优化[J],汽轮机技术,2010,52(5):329-332
[58]陈朝辉,刘艳,周力.螺旋桨随边切割的试验研究和理论计算[J],船海工程,2010,39(3):18-21
[59]Zhang, Meng,Wang, Xiaofang,Liu, Yan.Influence of Rotor Axial Shifting and Clearance on Leakage in Stepped Seal in Steam Turbines[A],Asia-Pacific Power and Energy Engineering Conference (APPEEC),2010
[60]刘艳,倪少玲.螺旋桨直径切割性能的试验研究和理论计算[J],船舶工程,2010,32(增刊2):44-47
[61]刘艳.余热排出泵变工况性能数值模拟[A],2010
[62]刘艳.Hybrid LES approach for practical turbomachinery flows: Part 1-hierarchy and example simulations[A],2010,1-13
[63]李泽挺,刘艳,李迅.兼顾船体加长的螺旋桨改造设计[J],中国修船,2009,22(6):56-57
[64]陈朝辉,刘艳,周力.随边切割后的螺旋桨性能的试验研究[A],第四届全国船舶与海洋工程学术会议,2009,271-275
[65]刘艳,李宇峰,冀春俊.60万千瓦空冷汽轮机组低压排汽缸流场模拟和结构优化[A],中国力学学会2009学术大会,2009,1-7
[66]董建华,刘艳.600MW超超临界汽轮机高压主汽调节联合阀内部流场的数值模拟分析[J],汽轮机技术,2009,51(2):107-110

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