Search NASA⌕ Search

NASA NTRS · 19920019218

Steady and transient performance calculation method for prediction, analysis, and identification

Abstract

The detailed design and development of turbofans Involves the prediction and identification, by means of test analysis, of the performance of the engine and its components. The thermodynamic simulation and analysis codes integrate existing knowledge and Interpretations of the detailed operating procedure of the components of the engine being developed. The relevance of the predicted performance depends on the quality of the representation of the various physical phenomena affecting the characteristics of the components and, consequently, on the incorporation of experimental correlation in the modelling. In this context, the representation of compressor and turbine characteristics is particularly important. Firstly, we will analyze the ability of corrected parameters to represent MACH similitude at the component inlet under various conditions. The various measurements achieved on the engine during development are used to enhance the modelling. The methods of identifying the thermodynamic calculation code with the various measurements, considered here with their uncertainties, are then presented and described. The analysis of the tests performed on the powerplant, designed to Identify the real characteristics of the engine components, can be undertaken, considering one or more engine test points and incorporating knowledge acquired through experimentation or on the component test bench. There are many possible fields of use for these identification methods ranging from the rematching of components to the optimization of the control system.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Jean Pierre Duponchel, Jean Loisy, Rene Carrillo. 1992-05-01. Steady and transient performance calculation method for prediction, analysis, and identification. https://ntrs.nasa.gov/citations/19920019218

Cite the original work for its findings. Save a collection to share your selection of sources.