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1. THERMAL ACTION
0.00 50.00 100.00 150.00 200.00
0.00
200.00
400.00
600.00
800.00
1000.00
1200.00
Thermal action on structure is defined as time -temperature
curve - time evolution of the gas temperature surrounding
the structure – this is the basis for heat flux calculation,
which is transmitted from surrounding to the structure.
Nominal temperature-time curve – as it does not represent
real fire, but insted the temperature measured at previous
fires.
EUROCODE 1 – three different nominal time-temperature curves
• Standard temperature-time curve
• External temperature-time curve
• Hydrocarbon temperature-time curve
0.00 50.00 100.00 150.00 200.00
0.00
200.00
400.00
600.00
800.00
1000.00
1200.00
Standard temperature-time curve
It is still used today in standard fire tests for evaluation of fire
resistance of structural and separating elements. It represents fully
developed fire in fire compartment.
10T 20 345log (8t 1)  
External temperature-time curve
It is used for external walls exposed to fire – outer surface of
separating walls of fire compartment.
 0.32 3.8
T 20 660 1 0.687 0.313t t
e e 
   
Hydrocarbon temperature-time curve
It is used for full combustion of hydrocarbons( gasoline, oil, other fuels).
 0.167 2.5
T 20 1080 1 0.325 0.675t t
e e 
   
0.00 20.00 40.00 60.00 80.00 100.00 120.00 140.00 160.00 180.00 200.00
0.00
200.00
400.00
600.00
800.00
1000.00
1200.00
External Curve Hydrocarbon Curve Standard Curve
Example 1.1
What will be the temperature of all three nominal curves after 30 minutes?
10T 20 345log (8 30 1) 841.8 Co
x   
 0.32 30 3.8 30
T 20 660 1 0.687 0.313 679.97 Cx x o
e e 
    
Standard curve
External curve
 0.167*30 2.5*30
T 20 1080 1 0.325 0.675 1097.66 Co
e e 
    
Hydrocarbon curve

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Fire res 1 thermal action

  • 1. 1. THERMAL ACTION 0.00 50.00 100.00 150.00 200.00 0.00 200.00 400.00 600.00 800.00 1000.00 1200.00 Thermal action on structure is defined as time -temperature curve - time evolution of the gas temperature surrounding the structure – this is the basis for heat flux calculation, which is transmitted from surrounding to the structure. Nominal temperature-time curve – as it does not represent real fire, but insted the temperature measured at previous fires. EUROCODE 1 – three different nominal time-temperature curves • Standard temperature-time curve • External temperature-time curve • Hydrocarbon temperature-time curve
  • 2. 0.00 50.00 100.00 150.00 200.00 0.00 200.00 400.00 600.00 800.00 1000.00 1200.00 Standard temperature-time curve It is still used today in standard fire tests for evaluation of fire resistance of structural and separating elements. It represents fully developed fire in fire compartment. 10T 20 345log (8t 1)   External temperature-time curve It is used for external walls exposed to fire – outer surface of separating walls of fire compartment.  0.32 3.8 T 20 660 1 0.687 0.313t t e e      Hydrocarbon temperature-time curve It is used for full combustion of hydrocarbons( gasoline, oil, other fuels).  0.167 2.5 T 20 1080 1 0.325 0.675t t e e     
  • 3. 0.00 20.00 40.00 60.00 80.00 100.00 120.00 140.00 160.00 180.00 200.00 0.00 200.00 400.00 600.00 800.00 1000.00 1200.00 External Curve Hydrocarbon Curve Standard Curve
  • 4. Example 1.1 What will be the temperature of all three nominal curves after 30 minutes? 10T 20 345log (8 30 1) 841.8 Co x     0.32 30 3.8 30 T 20 660 1 0.687 0.313 679.97 Cx x o e e       Standard curve External curve  0.167*30 2.5*30 T 20 1080 1 0.325 0.675 1097.66 Co e e       Hydrocarbon curve