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Performance prediction of transonic axial compressor based on streamline curvature method
by
Qiang, X. Q.
, OuYang, H.
, Du, Zh. H.
, Hu, J. F.
, Zhu, X. Ch
in
Applied sciences
/ Compressible flows; shock and detonation phenomena
/ Compressors
/ Control
/ Curvature
/ Deviation
/ Dynamical Systems
/ Engineering
/ Exact sciences and technology
/ Fluid dynamics
/ Fundamental areas of phenomenology (including applications)
/ Incidence
/ Industrial and Production Engineering
/ Mathematical analysis
/ Mathematical models
/ Mechanical Engineering
/ Mechanical engineering. Machine design
/ Performance prediction
/ Physics
/ Pump and compressors (turbocompressors, fans, etc.)
/ Transonic compressors
/ Transonic flows
/ Vibration
/ 기계공학
2011
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Performance prediction of transonic axial compressor based on streamline curvature method
by
Qiang, X. Q.
, OuYang, H.
, Du, Zh. H.
, Hu, J. F.
, Zhu, X. Ch
in
Applied sciences
/ Compressible flows; shock and detonation phenomena
/ Compressors
/ Control
/ Curvature
/ Deviation
/ Dynamical Systems
/ Engineering
/ Exact sciences and technology
/ Fluid dynamics
/ Fundamental areas of phenomenology (including applications)
/ Incidence
/ Industrial and Production Engineering
/ Mathematical analysis
/ Mathematical models
/ Mechanical Engineering
/ Mechanical engineering. Machine design
/ Performance prediction
/ Physics
/ Pump and compressors (turbocompressors, fans, etc.)
/ Transonic compressors
/ Transonic flows
/ Vibration
/ 기계공학
2011
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Performance prediction of transonic axial compressor based on streamline curvature method
by
Qiang, X. Q.
, OuYang, H.
, Du, Zh. H.
, Hu, J. F.
, Zhu, X. Ch
in
Applied sciences
/ Compressible flows; shock and detonation phenomena
/ Compressors
/ Control
/ Curvature
/ Deviation
/ Dynamical Systems
/ Engineering
/ Exact sciences and technology
/ Fluid dynamics
/ Fundamental areas of phenomenology (including applications)
/ Incidence
/ Industrial and Production Engineering
/ Mathematical analysis
/ Mathematical models
/ Mechanical Engineering
/ Mechanical engineering. Machine design
/ Performance prediction
/ Physics
/ Pump and compressors (turbocompressors, fans, etc.)
/ Transonic compressors
/ Transonic flows
/ Vibration
/ 기계공학
2011
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Performance prediction of transonic axial compressor based on streamline curvature method
Journal Article
Performance prediction of transonic axial compressor based on streamline curvature method
2011
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Overview
The streamline curvature (SLC) method is still of great importance for modern compressor performance prediction. The models applied in it, such as minimum incidence, deviation and loss, affect prediction’s accuracy directly. An improved SLC approach is introduced in this paper, which is developed based on the analysis and summary of predecessor’s works. The improvement is embodied mainly in the incidence and loss, which is the result of a combination of the previous models and models’ revisions in order to consider the main effects for modern compressor cascade. A certain isolated stage axial transonic compressor is calculated by SLC method. The speed lines and span-wise aerodynamic parameters are compared with the experiment data to demonstrate the SLC approach presented in this paper.
Publisher
Korean Society of Mechanical Engineers,Springer Nature B.V,대한기계학회
Subject
/ Compressible flows; shock and detonation phenomena
/ Control
/ Exact sciences and technology
/ Fundamental areas of phenomenology (including applications)
/ Industrial and Production Engineering
/ Mechanical engineering. Machine design
/ Physics
/ Pump and compressors (turbocompressors, fans, etc.)
/ 기계공학
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