NASA NTRS · 20030015486
Response Surface Methods for Spatially-Resolved Optical Measurement Techniques
Abstract
Response surface methods (or methodology), RSM, have been applied to improve data quality for two vastly different spatial ly-re solved optical measurement techniques. In the first application, modern design of experiments (MDOE) methods, including RSM, are employed to map the temperature field in a direct-connect supersonic combustion test facility at NASA Langley Research Center. The laser-based measurement technique known as coherent anti-Stokes Raman spectroscopy (CARS) is used to measure temperature at various locations in the combustor. RSM is then used to develop temperature maps of the flow. Even though the temperature fluctuations at a single point in the flowfield have a standard deviation on the order of 300 K, RSM provides analytic fits to the data having 95% confidence interval half width uncertainties in the fit as low as +/-30 K. Methods of optimizing future CARS experiments are explored. The second application of RSM is to quantify the shape of a 5-meter diameter, ultra-light, inflatable space antenna at NASA Langley Research Center.
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Danehy, P. M., Dorrington, A. A., Cutler, A. D., DeLoach, R.. 2003-01-01. Response Surface Methods for Spatially-Resolved Optical Measurement Techniques. https://ntrs.nasa.gov/citations/20030015486
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