Z305压气机内部流场数值分析及扩压器结构优化Numerical Analysis of Internal Flow Field of Z305 Centrifugal Compressor and Structural Optimization of Diffuser
李成,杜礼明,王尕平,王澄宇,王焱
LI Cheng,DU Li-ming,WANG Ga-ping,WANG Cheng-yu,WANG Yan
摘要(Abstract):
为分析叶轮和扩压器耦合作用下的压气机内部流场,在级环境下对Z305增压器离心压气机进行了数值研究,结果表明该压气机的工作范围较狭窄和整级效率较低的原因在于叶轮出口段到扩压器进口处都存在较大的涡流区。通过减少扩压器叶片数和缩短叶片尾缘的长度,改善了叶轮和扩压器的耦合关系,使得压气机工作范围和在多工况下的效率和压比等性能参数都明显提高。
Numerical analysis of the internal flow field of Z305 centrifugal compressor in multistage environment was carried out. The results indicate that narrow working rang and low efficiency of the compressor contributes to the eddy between outlet of the impeller and inlet of the diffuser. The coupling relationship between the impeller and diffuser was improved by reducing vane number of the diffuser and shortening the length of the blade trailing edge. The optimal results show that the stable working range of the compressor was broadened and working efficiency and pressure ratio in multistage environment were increased significantly.
关键词(KeyWords):
离心式压气机;叶轮;扩压器;内部流场
centrifugal compressor;impeller;diffuser;internal flow field
基金项目(Foundation): 国家自然科学基金资助项目(11202043)
作者(Author):
李成,杜礼明,王尕平,王澄宇,王焱
LI Cheng,DU Li-ming,WANG Ga-ping,WANG Cheng-yu,WANG Yan
参考文献(References):
- [1]徐忠.离心式压缩机原理[M].北京:机械工业出版社.1990.
- [2]朱大鑫.涡轮增压与涡轮增压器[M].兵器工业第七〇研究所,1997.7.
- [3]Denton Loss J D.Mechanisms in turbo machines[J].ASME.Journal of Turbo Machinery,Voll15,No.1
- [4]汤华.离心压气机流场分析与扩压器设计[D].北京:中国科学院研究生院,2005.
- [5]刘瑞韬,徐忠.离心叶轮机械内部流动的研究进展[J].力学进展,2003,33(4):518-532.
- [6]闻苏平,张楚华,李景银.旋转叶轮和叶片扩压器耦合的非定常流动计算[J].西安交通大学学报,2004,37(7):754-757.
- [7]朱智富.车用涡轮增压器离心压气机喘振机理及预测研究[D].北京:北京理工大学,2008.
- [8]龚义朝,杜礼明,王澄宇,等.离心压气机机匣处理多工况性能预测与分析[J].流体机械,2013,41(2):55-59.
- [9]冀春俊,李晓庆,余道刚.增压器压气机流动分析与全工况优化[J].流体机械,2012,40(1):30,35-39.
- [10]付磊,曾燚林,唐克伦,等.管壳式换热器壳程流体流动与传热数值模拟[J].压力容器,2012,29(5):39-44.
- [11]谷吉海,赵海玉,迟广志,等.基于LabVIEW的烟支圆周检测系统软件设计[J].包装与食品机械,2011,(10):56-59,71.
- [12]林建生,谭旭光.燃气轮机与涡轮增压内燃机原理与应用[M].天津:天津大学出版社,2005.