Two-Dimensional Investigation of the Fundamentals of OGV Buffeting

Author:

Harris JonahORCID,Lad Bharat,Stapelfeldt SinaORCID

Abstract

The increased demands of compact modern aero engine architectures have highlighted the problem of outlet guide vane (OGV) buffeting in off-design conditions. This structural response to aerodynamic excitations is characterised by increased vibration, risking structural fatigue. Investigations focused on understanding, mitigation and avoidance are therefore of high priority. OGV buffet is a type of transonic buffet caused by unsteady shock movement, but the exact parameters driving it are not fully understood. To try and understand them, this paper examines the buffet of a quasi-2D OGV geometry. Parametric studies of the incidence angle and inlet Mach number were performed. Forcing frequencies for both studies were found to be close to the experimentally detected frequency of vibration in the first bow mode, which demonstrates that buffet is driven by quasi-2D flow features. Increasing the inlet Mach number increased the dominant forcing frequency, whereas increasing the incidence yielded little change. Profiles of unsteady pressure amplitudes were shown to smoothly increase in magnitude with an increasing incidence and inlet Mach number.

Funder

Engineering and Physical Sciences Research Council

Rolls-Royce

Publisher

MDPI AG

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering

Reference15 articles.

1. Separated Flow and Buffeting Control

2. Two Dimensional Investigation of the Fundamentals of OGV Buffeting. ETChttps://www.euroturbo.eu/publications/proceedings-papers/etc2021-607

3. Experimental Study of Shock Oscillation over a Transonic Supercritical Profile

4. Shock Wave-Boundary-Layer Interactions;Babinsky,2011

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