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Open Access

A multi-fidelity simulation method research on front variable area bypass injector of an adaptive cycle engine

Zhewen XUaMing LIbHailong TANGa,cMin CHENa( )
School of Energy and Power Engineering, Beihang University, Beijing 100083, China
Aero Engine Academy of China, Beijing 101300, China
Research Institute of Aero-Engine, Beihang University, Beijing 102206, China

Peer review under responsibility of Editorial Committee of CJA.

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Abstract

Front Variable Area Bypass Injector (Front-VABI) is a component of the Adaptive Cycle Engine (ACE) with important variable-cycle features. The performance of Front-VABI has a direct impact on the performance and stability of ACE, but the current ACE performance model uses approximate models for Front-VABI performance calculation. In this work, a multi-fidelity simulation based on a de-coupled method is developed which delivers a more accurate calculation of the Front-VABI performance based on Computational Fluid Dynamics (CFD) simulation. This simulation method proposes a form of Front-VABI characteristic and its matching calculation method between it and the ACE performance model, constructs a coupling method between the (2-D) Front-VABI model and the (0-D) ACE performance model. The result shows, when ACE works in triple bypass mode, the approximate model cannot account for the effect of Front-VABI pressure loss on Core Driven Fan Stage (CDFS) design pressure ratio, and the calculated error of high-pressure turbine inlet total temperature is more than 40 K in mode transition condition (the transition operating condition between triple bypass mode and double bypass mode). In double bypass mode, the approximate model can better simulate the performance of Front-VABI by considering the local loss of area expansion. This method can be applied to the performance-optimized design of Front-VABI and the ACE control law design during mode transition.

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Chinese Journal of Aeronautics
Pages 202-219

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Cite this article:
XU Z, LI M, TANG H, et al. A multi-fidelity simulation method research on front variable area bypass injector of an adaptive cycle engine. Chinese Journal of Aeronautics, 2022, 35(4): 202-219. https://doi.org/10.1016/j.cja.2021.08.034

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Received: 17 November 2020
Revised: 11 December 2020
Accepted: 17 February 2021
Published: 21 October 2021
© 2021 Chinese Society of Aeronautics and Astronautics.

This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).