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Updated: Nov 20, 2025

Experimental Methodology for Estimation of Local Heat Fluxes and Burning Rates in Steady Laminar Boundary Layer Diffusion Flames
Published on: June 1, 2016
The effect of a known object in a static image of a burn to improve the burn size estimation
Kirsty Smith1, Krzystof Poterlowicz2, Stephen Southern3
1Plastic Surgery and Burns Research Unit, The University of Bradford, Richmond Road, Bradford, BD7 1DP, UK; Bradford Teaching Hospitals, Duckworth Lane, Bradford, BD9 6RJ, UK.
Introduction:
Currently information regarding burn size from referring departments to burn centres varies in accuracy. Inaccurate assessment of burn size can lead to over or under treatment. Photographs of injuries may improve accuracy of assessment. We aimed to assess the accuracy of measuring burn size on a static image by including a standard object in the image.
Methods:
Simulated burn areas were drawn on different body parts of the model. Using an iPhone® model 5 s with an 8 megapixel camera we took photos of the marked area, and repeated them with the palm, a standard bank card and a penny in the picture. First the Du Bois formula, was used to calculate body surface area. Members of the Burns team were asked to view the photos (n = 30) and estimate the percentage of the simulated burn.
Results:
We found an overall overestimation of burn size. Small areas of the forearm were better estimated and within 1.1% of the calculated surface area, however we found no improvement when using a standard object in these images. The back areas were most overestimated ranging from 0.9%-8.9% despite all being the same sized area.
Conclusions:
Static images tend to overestimate burn size despite the use of a standard object in the image.
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