000 01707nab a2200217 4500
005 20260520001111.0
008 260224s2015 xxu ing
041 _aInglés
245 0 0 _aTemperature Predictions Using Hybrid Heat Flux Gage Measurements
260 _a
_b
_cmayo 2015
270 _a14/09/2015 ; 14/09/2015
300 _a23 p. ; 723-746
520 _aTranscripción del resúmen realizada por el autor: The hybrid heat flux gage is a high temperature device that does not require water cooling and can be placed directly onto a surface to quantify the heat exposure boundary conditions. In this research, the hybrid gage was mounted onto three different samples and used to determine exposure conditions for predicting the transient temperature rise of the samples. Tests were performed in an ASTM E1354 cone calorimeter at cold surface heat flux levels of 10 kW/m2, 20 kW/m2 and 35 kW/m2. Boundary condition details such as the radiant heat flux and the convective heat transfer coefficient were determined with the hybrid gage. The measured boundary conditions were input into the finite element package Abaqus to predict the transient through thickness temperature rise of aluminum alloy 5083, Marinite P, and UNIFRAX Duraboard LD ceramic board. Transient temperature predictions were generally within 6% of the experimental data, demonstrating the use of the hybrid gage to determine the mixed mode boundary condition details for fire applications.
581 _a3
773 0 _tFire Technology
_g51
942 _cARTICULO
100 1 _aVega, Thomas
_954814
100 1 _aLattimer, Brian Y.
_952407
100 1 _aDiller, Thomas E.
_954815
999 _c189180
_d189180