An Aerodynamic Loss Model for Axial Turbine Design

Author:

Li Zhi1,Liu Yan1

Affiliation:

1. Dalian University of Technology School of Energy and Power Engineering, , No. 2 Linggong Road, Ganjingzi District, Dalian 116024 , China

Abstract

Abstract Aerodynamic loss models play an important role in the preliminary design of axial turbines. However, prediction accuracy and parameter sensitivity of traditional models being used for decades are problematic. Thus, this paper proposed a new loss model for predicting turbine aerodynamic performance at the design point. In order to construct the model, 228 turbine cascades for calibration were designed and evaluated by computational fluid dynamics (CFD). Based on massive CFD data, correlation of parameters and loss coefficients were investigated. Finally, new loss model expressions were built. The accuracy of the proposed novel model was verified by CFD for nine turbines including 15 stages. Numerical results show that the average efficiency deviation for the new model is 0.48% for stages and 0.009 for entropy loss coefficient of the blade rows. Compared with the Craig and Cox model and Kacker and Okapuu model, the presented new model performs better in predicting aerodynamic loss, especially in predicting the effect of parameters on the losses.

Funder

National Natural Science Foundation of China

Publisher

ASME International

Subject

Mechanical Engineering

Reference23 articles.

1. Review of Axial Turbine Loss Model;Wang;J. Propul. Technol.,2021

2. A Method of Performance Estimation for Axial-Flow Turbines;Ainley,1951

3. Improvements to the Ainley-Mathieson Method of Turbine Performance Prediction;Dunham;J. Eng. Power,1970

4. A Mean Line Prediction Method for Axial Flow Turbine Efficiency;Kacker;J. Eng. Power,1982

5. An Improved Incidence Losses Prediction Method for Turbine Airfoils;Moustapha;ASME J. Turbomach.,1990

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