期刊文献+

轴流压气机级内污垢沉积影响的数值研究 被引量:22

Numerical Study on the Impact of Fouling on Axial Compressor Stages
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摘要 采用三维数值方法,对具有一定典型性的真实压气机级NASA stage 35进行研究,通过与文献中实验数据的对比,校核了商业CFD计算代码的可靠性,得到的性能曲线与实验数据有较好的一致性;通过对污垢沉积引起的叶片厚度和壁面粗糙度的增加来模拟不同的污垢沉积程度对压气机级性能的影响。结果表明,增加壁面粗糙度将显著降低压气机级等熵效率和总压比,喘点和堵点的流量均有所下降,对稳定工作范围影响不大;增加叶片厚度大幅降低堵点流量而对喘点流量影响较小,使得压气机级的稳定工作范围明显减小;动叶壁面粗糙度的增加相比静叶对级性能的影响明显要大。 Three-dimensional numerical method has been used in an investigation of NASA stage 35 which was a typically realistic compressor stage.Firstly,the numerical model was validated against the experimental data available from literature to check accuracy of the commercially computational fluid dynamic code.Computed performance maps showed good agreement with experimental data.Then,the model was used to simulate the effect of fouling on compressor stage in terms of imposing different combinations of added thickness and surface roughness levels.As a result,with surface roughness increasing,the compressor isentropic efficiency and total pressure ratio significantly reduced,mass flow rate decreased at both choked and near stall region,and surface roughness had little effect on compressor stable operating range.When the adding thickness increased,mass flow rate had a great drop at a choked point,but different at near stall point,and compressor stable operating range reduced obviously.The augment of surface roughness on rotor passage is the main fact of performance deterioration and it needs to be investigated.
出处 《推进技术》 EI CAS CSCD 北大核心 2012年第3期377-383,共7页 Journal of Propulsion Technology
基金 国家自然科学基金创新研究群体项目(51121004) 中央高校基本科研业务费专项基金(HIT.NSRIF.2010033)
关键词 航空发动机 轴流压气机级 污垢沉积 粗糙度 厚度 Aircraft engine Axial compressor stage Fouling Roughness Thickness
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参考文献12

  • 1Suder K L,Chima R V,Strazisar A J. The Effect of Adding Roughness and Thickness to a Transonic Axial Compressor Rotor[J].ASME Journal of Turbomachin- ery,1995,(04):491-505.doi:10.1115/1.2836561.
  • 2Bammert K,Woelk G U. The Influence o1: the Blading Surface Roughness on the Aerodynamic Behavior and Characteristic of an Axial Compressor [ ASME 79-GT- 102][R].
  • 3Syverud E,Brekke O,Bakken L E. Axial Compressor De- terioration Caused by Saltwater Ingestion [ J 1[J].Journal of Turbomachinery,Transactions of the ASME,2007,(03):119-127.
  • 4Syverud E,Bakken L E. The Impact of Surface Roughness on Axial Compressor Performance Deterioration [ ASME 2006-GT-90004][R].
  • 5Morini M,Pinelli M,Spina P R. Computational Fluid Dynamics Simulation of Fouling on Axial Compres- sor Stages[J].Journal of Engineering for Gas Turbines and Power,Transactions of the ASME,2010,(02).
  • 6Gbadebo S A,Hynes T P,Cumpsty N A. Influence of Surface Roughness on Three-Dimensional Separation in Axial Compressors[J].ASME Journal of Turbomachin- ery,2004,(04):455-463.doi:10.1115/1.1791281.
  • 7吴艳辉,楚武利,卢新根.导叶厚度变化对压气机级的性能影响[J].推进技术,2005,26(5):425-429. 被引量:2
  • 8李冬,樊照远,张娟,杨欣毅.压气机叶片粗糙度对其性能衰退的影响研究[J].航空发动机,2009,35(5):32-35. 被引量:18
  • 9李本威,李冬,李姜华,王永华,杨欣毅.单级压气机性能衰退定量研究[J].航空动力学报,2010,25(7):1588-1594. 被引量:35
  • 10Reid L,Moore R D. Design and Overall Performance of Four Highly Loaded,High-Speed Inlet Stages for an Ad- vanced High-Pressure-Ratio Core Compressor[NASA-TP-1337][R].1978.

二级参考文献23

  • 1张楚华,王宝潼,栾辉宝,刘帆.叶顶间隙对离心叶轮气动性能影响研究[J].流体机械,2006,34(12):13-16. 被引量:25
  • 2李绍斌,苏杰先,冯国泰,王仲奇.动静叶干扰下跨声压气机级性能与叶片型面静压研究[J].航空动力学报,2007,22(7):1153-1160. 被引量:11
  • 3Tabakoff W.Engine Deterioration When Exposed To Particulate Flows [R]. ASMETurbo Expo2006:GT2006-91236.
  • 4Tarabine A P,Schurovasky V A.An Analysis of Axial Compressor Fouling and a Cleaning Method of their Blading [R].ASME 96-GT-363.
  • 5Kurz R,Brun K. Degradation in Gas Turbine Systems [R]. ASMEJ .Eng. Gas Turbines. Power, 2001, 123: 70-77.
  • 6bakoff Balan W. Method of Predicting the Performance Deterioration of a compressor Cascade. Dueto Sand Erosion[J]AIAA: 83-0178.
  • 7Rainer Kurz, Klau Brun. Degradation In Gas Turbine System [J].Proceeding of GT 2000 : 2000- GT - 345.
  • 8Influence of the Reynolds number on the performance of centrifugal compressors [R]. ASME Gas Turbine Conference and Exhibition: 87-GT-10.
  • 9Elisabet Syverud, Lars E. Bakken. The Impact of Surface Roughness on Axial Compressor Performance deterioration [J]. Proceeding of GT2006: GT2006-9-000.
  • 10王保国 黄虹宾.叶轮机械跨声速及亚声速流场的计算方法[M].北京:国防工业出版社,2001.75-85.

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引证文献22

二级引证文献69

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