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- W2323573950 abstract "A new approach for predicting surface heat flux from in-depth temperature measurements is experimentally verified herein. Specifically, this paper presents an experimental verification of the theory developed in the companion Part 1 work. In Part 1, a novel, physics-based calibration approach to the inverse heat conduction problem is mathematically developed, and a methodology for resolving surface heat flux is presented. It is significant to note that this new approach does not require knowledge of host material thermophysical properties, sensor depth, lead losses, or sensor characteristics. Regularization of the data is accomplished by way of a robust “future information parameter,” which is determined by examination of the residual. This paper presents an electrical heating experiment that validates the new inverse approach. A custom nichrome element heater is sandwiched between two identical bronze plates creating a symmetry condition. The setup is capable of surface heat fluxes near 12 W/cm2. Two te..." @default.
- W2323573950 created "2016-06-24" @default.
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- W2323573950 date "2012-01-09" @default.
- W2323573950 modified "2023-09-26" @default.
- W2323573950 title "Surface Heat Flux Prediction Through Physics-Based Calibration: Part 2-Experimental Validation" @default.
- W2323573950 cites W1970539251 @default.
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- W2323573950 doi "https://doi.org/10.2514/6.2012-223" @default.
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