会议论文详细信息
22nd International Conference on Spectral Line Shapes
CFD Modelling of a Quadrupole Vortex Inside a Cylindrical Channel for Research into Advanced Hybrid Rocket Designs
Godfrey, B.^1 ; Majdalani, J.^2
Department of Mechanical, Aerospace and Biomedical Engineering, University of Tennessee, Space Institute, Tullahoma
TN
37388, United States^1
Department of Aerospace Engineering, Auburn University, Auburn
AL
36849, United States^2
关键词: CFD simulations;    Computational program;    Cylindrical channel;    Geometrical configurations;    Injection patterns;    Stanford University;    Vortex generation;    Vortex generators;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/548/1/012067/pdf
DOI  :  10.1088/1742-6596/548/1/012067
来源: IOP
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【 摘 要 】

This study relies on computational fluid dynamics (CFD) tools to analyse a possible method for creating a stable quadrupole vortex within a simulated, circular-port, cylindrical rocket chamber. A model of the vortex generator is created in a SolidWorks CAD program and then the grid is generated using the Pointwise mesh generation software. The non-reactive flowfield is simulated using an open source computational program, Stanford University Unstructured (SU2). Subsequent analysis and visualization are performed using ParaView. The vortex generation approach that we employ consists of four tangentially injected monopole vortex generators that are arranged symmetrically with respect to the center of the chamber in such a way to produce a quadrupole vortex with a common downwash. The present investigation focuses on characterizing the flow dynamics so that future investigations can be undertaken with increasing levels of complexity. Our CFD simulations help to elucidate the onset of vortex filaments within the monopole tubes, and the evolution of quadrupole vortices downstream of the injection faceplate. Our results indicate that the quadrupole vortices produced using the present injection pattern can become quickly unstable to the extent of dissipating soon after being introduced into simulated rocket chamber. We conclude that a change in the geometrical configuration will be necessary to produce more stable quadrupoles.

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