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NASA NTRS · Presentation

Assessing Engine Hot Fire Data for Human Spaceflight Applications

Published 2024-05-13 From Marshall Space Flight Center 1 author

Attribution

This is the abstract and citation. Full text lives at NASA NTRS — we link out rather than host. All credit to the authors and Marshall Space Flight Center.

Abstract

Verbatim from NASA NTRS. Not paraphrased, not summarized.

Development and certification of liquid engine systems for human spaceflight missions requires exhaustive analysis to meet the NASA’s requirements for engine health, reliability, and performance. The techniques used to assess requirement conformance and test-to-test engine health pose many unique challenges including the unusually large scale of data, complex component and system analysis, and rigorous engineering judgement standards. To address these challenges, NASA Marshall Space Flight Center’s Engine Systems branch has developed and maintained a robust software suite and operational processes that satisfy programmatic requirements levied on engines and the 7 Elements of Flight Rationale. Analysis at a systems level includes subsystem assessment of components such as turbomachinery and combustion devices as well as structural and fluid dynamics and transient and steady-state assessment at a systems level. Some of the most important tools to accomplish this analysis are automated script databases, creation of historical and statistical comparisons, and parameters calculated at the full data rate. These tools greatly simplify the crucial processes of anomaly investigation, limit monitoring, health assessment, and timely communication of key conclusions drawn from hot fire testing and flight data analysis.

Author

  • J. Davis Hunter Marshall Space Flight Center

Keywords

  • Data Assessment
  • WinPlot
  • Visualization

Citation: J. Davis Hunter (2024). Assessing Engine Hot Fire Data for Human Spaceflight Applications. Marshall Space Flight Center. NASA NTRS ID 20240004867. https://ntrs.nasa.gov/citations/20240004867 ↗