Name | Test_20
|
---|---|
Date | |
Description | Cabinet #8 burn using natural gas line burner inside of cabinet lower right side to ignite electical cable. |
Specimen | Electrical Cables
|
Ignition | Line Burner
|
Project ID (s) | |
Test Director | McGrattan
|
Measurement | Value | Uc | Unit |
---|---|---|---|
Peak Heat Release Rate, PHRR
|
127.2
|
7.8
|
kW
|
Time to Peak Heat Release Rate
|
11.35
|
0.07
|
min
|
Total Heat Released, THR
|
126.9
|
9.1
|
MJ
|
Gas Burner Total Heat Released, NGTHR
|
30.62
|
0.44
|
MJ
|
Heat Release Quality Confirmation, HRQC
|
Not measured | - | MJ/MJ
|
Net Specimen Mass (gravimetric), NM = Mi-Mf
|
Not measured | - | kg
|
Total Fuel Mass Burned, TFM = THR / HOCf
|
7.51
|
0.59
|
kg
|
Net Effective Heat of Combustion = THR / NM
|
Not measured | - | MJ/kg
|
O2 Yield = O2 Consumed / TFM
|
1.31
|
0.11
|
kg/kg
|
CO2 Yield = CO2 Generated / TFM
|
1.158
|
0.099
|
kg/kg
|
CO Yield = CO Generated / TFM
|
0.0875
|
0.0075
|
kg/kg
|
Soot Yield = Soot Generated / TFM
|
0.0190
|
0.0045
|
kg/kg
|
Baseline Hood Exhaust Flow
|
13.08
|
0.39
|
kg/s
|
Test Duration = Time(Fire Out) - Time(Ignition)
|
39.67
|
0.03
|
min
|
Uc = Combined Expanded Uncertainty with 95% confidence level
Parameter | Value | Uc | Unit |
---|---|---|---|
Fuel Type
|
PVC, Natural Gas
|
- | - |
Hood Size
|
6
|
- | m
|
Effective Duct Diameter
|
1.975
|
0.005
|
m
|
Exhaust Flow Correction Factor
|
1.055
|
0.034
|
- |
Net Heat of Combustion (per unit mass O2), Ef
|
12.84
|
0.51
|
MJ/kg
|
Net Heat of Combustion(per unit mass fuel), HOCf
|
16.90
|
0.50
|
MJ/kg
|
Initial Specimen Mass, Mi (gravimetric)
|
Not measured | - | kg
|
Final Specimen Mass, Mf (gravimetric)
|
Not measured | - | kg
|
Event | Time (min) | Description | Video Snapshot Image |
---|---|---|---|
1
|
0.00
|
Ignition
|
![]() |
peak
|
11.35
|
Peak HRR
|
![]() |
2
|
20.53
|
gas burner OFF
|
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3
|
38.67
|
suppression spray bottle
|
![]() |
4
|
39.67
|
Fire Out
|
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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