Design and Analysis of an Intercooled Turbofan Engine

Author:

Xu Lei1,Grönstedt Tomas1

Affiliation:

1. Department of Applied Mechanics, Division of Fluid Dynamics, Chalmers University of Technology, Gothenburg 41296, Sweden

Abstract

The performance of an intercooled turbofan engine is analyzed by multidisciplinary optimization. A model for making preliminary simplified analysis of the mechanical design of the engine is coupled to an aircraft model and an engine performance model. A conventional turbofan engine with technology representative for a year 2013 entry of service is compared with a corresponding intercooled engine. A mission fuel burn reduction of 3.4% is observed. The results are analyzed in terms of the relevant constraints such as compressor exit temperature, turbine entry temperature, turbine rotor blade temperature, and compressor exit blade height. It is shown that the gas path of an intercooled engine for medium range commercial transport applications, having an overall pressure ratio greater than 70 in top of climb, may still be optimized to fulfill a compressor exit blade height constraint. This indicates that a state of the art high pressure compressor efficiency can be achieved. Empirical data and a parametric computational fluid dynamics (CFD) study are used to verify the intercooler heat transfer and pressure loss characteristics.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference6 articles.

1. Xu, L., Gustafsson, B., and Grönstedt, T., 2007, “Mission Optimization of an Intercooled Engine,” Paper No. ISABE-1157.

2. Xu, L. , 2008, “Innovative Core Concepts for Future Aero Engines,”Licentiate thesis, Chalmers University of Technology, Gothenburg, Sweden.

3. Grönstedt, T. , 2001, “Development of Methods for Analysis and Optimization of Complex Jet Engine Systems,” Ph.D. thesis, Division of Thermo and Fluid Dynamics, Chalmers University of Technology, Gothenburg, Sweden.

4. Avellan, R., and Grönstedt, T., 2007, “Preliminary Design of Subsonic Transport Aircraft/Engines,” Paper No. ISABE-1195.

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