Publication | Closed Access
Thermocouple Response in Fires, Part 2: Validation of Virtual Thermocouple Model for Fire Codes
15
Citations
9
References
2010
Year
Thermocouple ModelEngineeringSimulationFire ModelingPremixed Turbulent FlameNumerical SimulationThermocouple ResponseVirtual Thermocouple ModelFire ProtectionSystems EngineeringThermal AnalysisModeling And SimulationThermodynamicsThermal ModelingMulti-physics ModellingDetailed ThermocoupleFire EngineeringFire SafetyComputer EngineeringTurbulent FlameHeat TransferAerospace EngineeringPart 2Fire CodesFire ResearchThermal EngineeringFire Safety Science
A virtual thermocouple model for high fidelity multiphysics computer simulation is introduced in this article. Detailed thermocouple and gas temperature (Coherent Anti-Stokes Raman Scattering) measurements were performed using a well-controlled, adiabatic, flat-flame Hencken burner, which provided data for validating the thermocouple model in a Sandia National Laboratories fire code. Comparison of simulation results to test data indicated a mean error of 6% between the thermocouple reading and predicted temperature.
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