arXiv · 1809.08684
Reduced Order Modeling Framework for Combustor Instabilities Using Truncated Domain Training
Abstract
A multi-fidelity framework is established and demonstrated for prediction of combustion instabilities in rocket engines. The major idea is to adapt appropriate fidelity modeling approaches for different components in a rocket engine to ensure accurate and efficient predictions. Specifically, the proposed framework integrates projection-based Reduced Order Models (ROMs) that are developed using bases generated on truncated domain simulations. The ROM training is performed on truncated domains, and thus does not require full order model solutions on the full rocket geometry, thus demonstrating the potential to greatly reduce training cost. Geometry-specific training is replaced by the response generated by perturbing the characteristics at the boundary of the truncated domain. This training method is shown to enhance predictive capabilities and robustness of the resulting ROMs, including at conditions outside the training range. Numerical tests are conducted on a quasi-1D model of a single-element rocket combustor and the present framework is compared to traditional ROM development approaches.
Explore related subjects
Keep this discovery
Jiayang Xu, Cheng Huang, Karthik Duraisamy. 2018-09-23. Reduced Order Modeling Framework for Combustor Instabilities Using Truncated Domain Training. https://doi.org/10.2514/1.j057959
Cite the original work for its findings. Save a collection to share your selection of sources.