Analysis of a low-angle annular expander nozzle

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Abstract

An experimental and numerical analysis of a low-angle annular expander nozzle is presented to observe the variance in shock structure within the flow field. A RANS-based axisymmetric numerical model was used to evaluate flow characteristics and the model validated using experimental pressure readings and schlieren images. Results were compared with an equivalent converging-diverging nozzle to determine the capability of the wake region in varying the effective area of a low-angle design. Comparison of schlieren images confirmed that shock closure occurred in the expander nozzle, prohibiting the wake region from affecting the area ratio. The findings show that a low angle of deflection is inherently unable to influence the effective area of an annular supersonic nozzle design.

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Schomberg, K., Olsen, J., & Doig, G. (2015). Analysis of a low-angle annular expander nozzle. Shock and Vibration, 2015. https://doi.org/10.1155/2015/675861

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