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- W2325535785 abstract "This study illustrates the effects of material matching as well as complex thermal environments on heat flux measurement. Direct and indirect heat flux measurement techniques are tested in three thermally diverse model materials at the same Mach 6 test condition. Before testing, the model/sensor combinations are tested in a radiative heat flux calibration rig at known heat fluxes. During testing, a total pressure of 1200 psi and total temperature of 1188° R yield stagnation convective heat flux of 40-50 BTU/ft 2 /s. A computational fluid dynamic study is also undertaken to further study the complex mechanisms at work. Testing yielded complex results that prove classic methodology for inverse heat flux calculation and direct heat flux measurement require more knowledge of the thermal environment than a simple match of material properties. Internal and external model geometry, as well as non-uniform transient heat flux, can result in calculated and measured heat flux that is not correct even with a thermally matched sensor." @default.
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- W2325535785 date "2012-06-25" @default.
- W2325535785 modified "2023-09-27" @default.
- W2325535785 title "Convective Heat Flux Measurement Validation and Qualification" @default.
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- W2325535785 doi "https://doi.org/10.2514/6.2012-3013" @default.
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