Band Heater Heat Flux Characterization Using Inverse Heat Conduction Problem Models

Author:

Peruchi Pacheco da Silva Ramon1,Woodbury Keith1,Samadi Forooza12,Carpenter Joseph1

Affiliation:

1. Department of Mechanical Engineering, The University of Alabama , Tuscaloosa, AL 35487

2. University of Alabama System

Abstract

Abstract An experimental apparatus was constructed to correlate water flowrate and temperature rise under an external band heater. Due to the physical characteristics of the band heater, its transient heating behavior is unknown. This paper investigates the application of inverse heat conduction problem (IHCP) methods to characterize the heat flux from the band heater. Three experiments with different heating times (5, 10, and 20 s) and no flowrate were conducted to measure the transient temperature under the 400 W band heater. Type-T thermocouples measure surface temperature at the centerline of the band heater. The experimental results are computed with five different heat conduction models. The models are chosen to identify how the heat flux response varies from a simplified to a realistic model. Additionally, the results of the experimental heat flux are compared to the manufacturer band heater data (58.9 kW/m2) for each model. The minimum time needed for the heater to fully energize the system is from 10 to 12 s. The residuals for each model are analyzed and used to evaluate the appropriateness of the five different models. The results show that the use of simpler models can achieve results similar to those of complex models, with less time and computational cost.

Publisher

ASME International

Reference16 articles.

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4. Exact Analytical Solution for 2D Transient Heat Conduction in a Rectangle With Partial Heating on One Edge;Int. J. Therm. Sci.,2017

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