Analyses of the Design of Multirows Vaneless Staggered Counter-Rotating Turbine

Compared with a conventional turbine, counter rotating turbine has larger thrust weight ratio, shorter axial distance, and higher efficiency. It has been widely used in high-performance aviation. In conventional counter-rotating turbine, HPT is located in the front of LPT, and only a stator row can...

Full description

Saved in:
Bibliographic Details
Main Authors: Zhongye Wu, Yukun Zhang, Qingfen Ma, Jingru Li
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:International Journal of Aerospace Engineering
Online Access:http://dx.doi.org/10.1155/2022/2414019
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832551329617149952
author Zhongye Wu
Yukun Zhang
Qingfen Ma
Jingru Li
author_facet Zhongye Wu
Yukun Zhang
Qingfen Ma
Jingru Li
author_sort Zhongye Wu
collection DOAJ
description Compared with a conventional turbine, counter rotating turbine has larger thrust weight ratio, shorter axial distance, and higher efficiency. It has been widely used in high-performance aviation. In conventional counter-rotating turbine, HPT is located in the front of LPT, and only a stator row can be eliminated. The layout limits the turbine weight and efficiency. Therefore, the staggered counter rotating turbine is proposed, and the staggered counter rotating turbine can eliminate the all-internal stators, which can greatly improve the turbine weight and efficiency. The staggered counter rotating turbine is the development and improvement of counter rotating turbine. Due to the elimination of the all-internal stators, the downstream rotor will suffer from the insufficient inlet swirl, which is the main question in staggered counter rotating turbine design. Furthermore, the turbine outlet angle is also an important parameter to evaluate the turbine design. The coordination of inlet swirl and outlet Mach number and the outlet angle is discussed by the theoretical method. In order to verify the design method, two-dimensional throughflow design, blade design, and three-dimensional numerical analysis are performed. Expansion ratios and efficiency at the speed combinations of the 80% to 105% are discussed to reveal the turbine characteristics at off-design conditions. An adiabatic total-to-total efficiency of 92.1% with expansion ratio of 4.47 at design point is obtained and achieves the initial design goal very well. The paper is aimed at providing a technical approach to improve the thrust weight ratio, efficiency of high bypass turbofan engines, and provide new ideas for the development of aeroengines.
format Article
id doaj-art-a9974f886e7f469ba34a40772e9e845a
institution Kabale University
issn 1687-5974
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series International Journal of Aerospace Engineering
spelling doaj-art-a9974f886e7f469ba34a40772e9e845a2025-02-03T06:01:49ZengWileyInternational Journal of Aerospace Engineering1687-59742022-01-01202210.1155/2022/2414019Analyses of the Design of Multirows Vaneless Staggered Counter-Rotating TurbineZhongye Wu0Yukun Zhang1Qingfen Ma2Jingru Li3School of Electromechanical EngineeringSchool of Electromechanical EngineeringSchool of Electromechanical EngineeringSchool of Electromechanical EngineeringCompared with a conventional turbine, counter rotating turbine has larger thrust weight ratio, shorter axial distance, and higher efficiency. It has been widely used in high-performance aviation. In conventional counter-rotating turbine, HPT is located in the front of LPT, and only a stator row can be eliminated. The layout limits the turbine weight and efficiency. Therefore, the staggered counter rotating turbine is proposed, and the staggered counter rotating turbine can eliminate the all-internal stators, which can greatly improve the turbine weight and efficiency. The staggered counter rotating turbine is the development and improvement of counter rotating turbine. Due to the elimination of the all-internal stators, the downstream rotor will suffer from the insufficient inlet swirl, which is the main question in staggered counter rotating turbine design. Furthermore, the turbine outlet angle is also an important parameter to evaluate the turbine design. The coordination of inlet swirl and outlet Mach number and the outlet angle is discussed by the theoretical method. In order to verify the design method, two-dimensional throughflow design, blade design, and three-dimensional numerical analysis are performed. Expansion ratios and efficiency at the speed combinations of the 80% to 105% are discussed to reveal the turbine characteristics at off-design conditions. An adiabatic total-to-total efficiency of 92.1% with expansion ratio of 4.47 at design point is obtained and achieves the initial design goal very well. The paper is aimed at providing a technical approach to improve the thrust weight ratio, efficiency of high bypass turbofan engines, and provide new ideas for the development of aeroengines.http://dx.doi.org/10.1155/2022/2414019
spellingShingle Zhongye Wu
Yukun Zhang
Qingfen Ma
Jingru Li
Analyses of the Design of Multirows Vaneless Staggered Counter-Rotating Turbine
International Journal of Aerospace Engineering
title Analyses of the Design of Multirows Vaneless Staggered Counter-Rotating Turbine
title_full Analyses of the Design of Multirows Vaneless Staggered Counter-Rotating Turbine
title_fullStr Analyses of the Design of Multirows Vaneless Staggered Counter-Rotating Turbine
title_full_unstemmed Analyses of the Design of Multirows Vaneless Staggered Counter-Rotating Turbine
title_short Analyses of the Design of Multirows Vaneless Staggered Counter-Rotating Turbine
title_sort analyses of the design of multirows vaneless staggered counter rotating turbine
url http://dx.doi.org/10.1155/2022/2414019
work_keys_str_mv AT zhongyewu analysesofthedesignofmultirowsvanelessstaggeredcounterrotatingturbine
AT yukunzhang analysesofthedesignofmultirowsvanelessstaggeredcounterrotatingturbine
AT qingfenma analysesofthedesignofmultirowsvanelessstaggeredcounterrotatingturbine
AT jingruli analysesofthedesignofmultirowsvanelessstaggeredcounterrotatingturbine