Uncertainty analysis of steady state incident heat flux measurements in hydrocarbon fuel fires

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Publication Type report
Research Institute Institute for Clean and Secure Energy (ICSE)
Author Nakos, James T.
Title Uncertainty analysis of steady state incident heat flux measurements in hydrocarbon fuel fires
Date 2005-12
Description The objective of this report is to develop uncertainty estimates for three heat flux measurement techniques used for the measurement of incident heat flux in a combined radiative and convective environment. This is related to the measurement of heat flux to objects placed inside hydrocarbon fuel (diesel, JP-8 jet fuel) fires, which is very difficult to make accurately (e.g., less than 10%). Three methods will be discussed: a Schmidt-Boelter heat flux gage; a calorimeter and inverse heat conduction method; and a thin plate and energy balance method. Steady state uncertainties were estimated for two types of fires (i.e., calm wind and high winds) at three times (early in the fire, late in the fire, and at an intermediate time). Results showed a large uncertainty for all three methods. Typical uncertainties for a Schmidt-Boelter gage ranged from ±23% for high wind fires to ±39% for low wind fires. For the calorimeter/inverse method the uncertainties were ±25% to ±40%. The thin plate/energy balance method the uncertainties ranged from ±21% to ±42%. The 23-39% uncertainties for the Schmidt-Boelter gage are much larger than the quoted uncertainty for a radiative only environment (i.e., ±3%). This large difference is due to the convective contribution and because the gage sensitivities to radiative and convective environments are not equal. All these values are larger than desired, which suggests the need for improvements in heat flux measurements in fires.
Type Text
Publisher Sandia National Laboratories
Subject steady state incident heat flux; hydrocarbon fuel fires; hydrocarbon fuel; heat flux; Schmidt-Boelter heat flux gage; calorimeter and inverse heat conduction method; thin plate and energy balance method.
Language eng
Bibliographic Citation Nakos, J. T. (2005). Uncertainty analysis of steady state incident heat flux measurements in hydrocarbon fuel fires. Sandia National Laboratories. SAND2005-7144.
Relation Has Part SAND2005-7144
Rights Management (c)Sandia National Laboratories
Format Medium application/pdf
Format Extent 2,122,623 bytes
Identifier ir-eua/id/2164
Source DSpace at ICSE
ARK ark:/87278/s6zg9r9k
Setname ir_eua
ID 213369
Reference URL https://collections.lib.utah.edu/ark:/87278/s6zg9r9k
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