A Multidisciplinary Approach to Mixer-Ejector Analysis and Design

A Multidisciplinary Approach to Mixer-Ejector Analysis and Design by Eric S. Hendricks, published by BiblioLife in July 2013, is a focused exploration of the complexities involved in designing engines for civil supersonic aircraft. This 30-page work addresses the challenges propulsion system engineers face, particularly balancing efficiency during cruise with noise reduction at takeoff to comply with airport regulations. The author presents an integrated approach to the analysis and design of mixer-ejector nozzles, which offer a potential solution to these competing requirements.
Readers will find a detailed discussion of a process that employs various low-fidelity tools to assess both performance and acoustics of mixer-ejector nozzles. The work expands to include system-level modeling of engines and aircraft, evaluating their impact on mission performance and noise near airports. The methodology is developed within the OpenMDAO framework, which is currently being advanced by NASA, and includes sample results for a hypothetical mixer-ejector design, showcasing the capabilities of the proposed method.
Official synopsis Publisher
The design of an engine for a civil supersonic aircraft presents a difficult multidisciplinary problem to propulsion system engineers. There are numerous competing requirements for the engine, such as to be efficient during cruise while yet quiet enough at takeoff to meet airport noise regulations. The use of mixer-ejector nozzles presents one possible solution to this challenge. However, designing a mixer-ejector which will successfully address both of these concerns is a difficult proposition. Presented in this paper is an integrated multidisciplinary approach to the analysis and design of these systems. A process that uses several low-fidelity tools to evaluate both the performance and acoustics of mixer-ejectors nozzles is described. This process is further expanded to include system-level modeling of engines and aircraft to determine the effects on mission performance and noise near airports. The overall process is developed in the OpenMDAO framework currently being developed by NASA. From the developed process, sample results are given for a notional mixer-ejector design, thereby demonstrating the capabilities of the method.
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