A Navier–Stokes Solver for Turbomachinery Applications

Author:

Arnone A.1,Swanson R. C.2

Affiliation:

1. Institute for Computer Applications in Engineering and Science (ICASE), NASA Langley Research Center, Hampton, VA 23665

2. NASA Langley Research Center, Hampton, VA 23665

Abstract

A computer code for solving the Reynolds-averaged full Navier–Stokes equations has been developed and applied using H- and C-type grids. The Baldwin–Lomax eddy-viscosity model is used for turbulence closure. The integration in time is based on an explicit four-stage Runge–Kutta scheme. Local time stepping, variable coefficient implicit residual smoothing, and a full multigrid method have been implemented to accelerate steady-state calculations. A grid independence analysis is presented for a transonic rotor blade. Comparisons with experimental data show that the code is an accurate viscous solver and can give very good blade-to-blade predictions for engineering applications.

Publisher

ASME International

Subject

Mechanical Engineering

Cited by 25 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Unstructured Shock-Fitting Calculations of the Transonic Flow in a Gas Turbine Cascade;Aerotecnica Missili & Spazio;2018-10

2. Basic Elements of Unstructured Shock-Fitting: Results Achieved and Future Developments;Shock Wave and High Pressure Phenomena;2017

3. On the Development of Turbomachine Blade Aerodynamic Design System;International Journal for Computational Methods in Engineering Science and Mechanics;2009-04-22

4. The Impact of Gas Modeling in the Numerical Analysis of a Multistage Gas Turbine;Journal of Turbomachinery;2008-03-25

5. Numerical Investigation of a Transonic Centrifugal Compressor;Journal of Turbomachinery;2008-01-01

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