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Gasoline_50g

Table 1. Test Information
Name
Gasoline_50g
Date
Description

gasoline 50 g, no range element heating, 20 cm stainless steel pan, pilot wand ignition.

Specimen
gasoline in 20 cm pan
Ignition
propane wand
Project ID (s)
Test Director
Hamins

Timelapse Video with Heat Release Rate Plot

Table 2. Summary of Test Results
Measurement Value Uc Unit
Peak Heat Release Rate, PHRR
21.9
1.2
kW
Time to Peak Heat Release Rate
0.95
0.17
min
Total Heat Released, THR
2.04
0.11
MJ
Natural Gas Burner Total Heat Released, NGTHR
0
-
MJ
Heat Release Quality Confirmation, HRQC
Not measured -
MJ/MJ
Net Specimen Mass (gravimetric), NM = Mi-Mf
0.0500
0.0085
kg
Net Effective Heat of Combustion = THR / NM
40.9
7.3
MJ/kg
O2 Yield = O2 Consumed / NM
2.85
0.49
kg/kg
CO2 Yield = CO2 Generated / NM
2.53
0.44
kg/kg
CO Yield = CO Generated / NM
below detection limit
0.0027
kg/kg
Soot Yield = Soot Generated / NM
0.075
0.016
kg/kg
Baseline Hood Exhaust Flow
1.119
0.034
kg/s
Test Duration = Time(Fire Out) - Time(Ignition)
1.97
0.03
min

Uc = Combined Expanded Uncertainty with 95% confidence level

Table 3. Summary of Test Input Parameters
Parameter Value Uc Unit
Fuel Type
Gasoline
- -
Hood Size
3
-
m
Effective Duct Diameter
0.485
0.004
m
Exhaust Flow Correction Factor
1.033
0.029
-
Net Heat of Combustion (per unit mass O2), Ef
13.40
0.54
MJ/kg
Net Heat of Combustion(per unit mass fuel), HOCf
43.70
2.60
MJ/kg
Initial Specimen Mass, Mi (gravimetric)
0.05
0.01
kg
Final Specimen Mass, Mf (gravimetric)
below detection limit
0.01
kg
Plot of Fire Heat Release Rate with event markers. Uncertainty bar shown at peak value.
Figure 1. Plot of Heat Release Rate data with event markers and error bars shown at peak.
Table 4. Summary of Observed Test Events
Event Time (min) Description Video Snapshot Image
1
-1.37
fuel pour
fuel pour
2
0.00
Ignition
Ignition
peak
0.95
Peak HRR
Peak HRR
3
1.97
Fire Out
Fire Out

Table 5. Supplemental Data Plots

Plot of Oxygen Dry Volume Fraction in hood exhaust stream.
Plot of Oxygen Dry Volume Fraction in hood exhaust stream.
Plot of Carbon Dioxide Dry Volume Fraction in hood exhaust stream.
Plot of Carbon Dioxide Dry Volume Fraction in hood exhaust stream.
Plot of Carbon Monoxide Dry Volume Fraction in hood exhaust stream.
Plot of Carbon Monoxide Dry Volume Fraction in hood exhaust stream.
Plot of Radiant Heat Flux data with event markers. r= radial distance from center of hood, h=height above floor.
Plot of Radiant Heat Flux data with event markers. r= radial distance from center of hood, h=height above floor.
Plot of Smoke Laser Extinction Coefficient in hood exhaust stream.
Plot of Smoke Laser Extinction Coefficient in hood exhaust stream.
Plot of Exhaust Duct Mass Flow Rate.
Plot of Exhaust Duct Mass Flow Rate.

Bryant, R. and Bundy, M. The NIST 20 MW Calorimetry Measurement System for Large-Fire Research, Technical Note (NIST TN) 2077, 2019
https://doi.org/10.6028/NIST.TN.2077

NIST Fire Calorimetry Database (FCD)
https://doi.org/10.18434/mds2-2314

Report Process Script Version
NFRL_Report_8.3.3
Last Updated May 14, 2021