How strong does my explosion have to be to do damage?

A lot of folks know that all it takes to break a window is around 0.5 psi, but what happens above that force? 

Impact of VCEs on Facilities

Peak
Overpressure

psi

Typical Damage

0.5 – 1 glass windows break
1 – 2

Common siding types fail:

– corrugated asbestos shatters

– corrugated steel panel joints fail

– wood siding blows in

2 – 3

Unreinforced concrete, cinder block walls fail

3 – 4

Self-framed steel panel buildings collapse

Oil storage tanks rupture

5

Utility poles snap

7

Loaded rail cars overturn

7 – 8

Unreinforced brick walls fail

 

Impact of VCEs on Personnel

Peak
Overpressure

(psi)

Equivalent
Wind Velocity

(mph)

Effects
1 – 2 70 knocks personnel down
5 – 10 160 – 290 ruptures eardrums
15 – 20 470 damages lungs
30 – 35 670 threshold for fatalities
50 940 50% fatalities
65   99% fatalities

Source:  Harry J. Toups LSU Department of Chemical Engineering with significant material from SACHE 2003 Workshop presentation by Ray French (ExxonMobil)

 

UPDATE on 9/2016 with ALOHA Data.

Overpressure*
(psig)
Expected Damage
0.04 Loud noise (143 db); sonic boom glass failure.
0.15 Typical pressure for glass failure.
0.40 Limited minor structural damage.
0.50-1.0 Windows usually shattered; some window frame damage.
0.70 Minor damage to house structures.
1.0 Partial demolition of houses; made uninhabitable.
1.0-2.0 Corrugated metal panels fail and buckle. Housing wood panels blown in.
1.0-8.0 Range for slight to serious laceration injuries from flying glass and other missiles.
2.0 Partial collapse of walls and roofs of houses.
2.0-3.0 Non-reinforced concrete or cinder block walls shattered.
2.4-12.2 Range for 1-90% eardrum rupture among exposed populations.
2.5 50% destruction of home brickwork.
3.0 Steel frame buildings distorted and pulled away from foundation.
5.0 Wooden utility poles snapped.
5.0-7.0 Nearly complete destruction of houses.
7.0 Loaded train cars overturned.
9.0 Loaded train box cars demolished.
10.0 Probable total building destruction.
14.5-29.0 Range for 1-99% fatalities among exposed populations due to direct blast effects.
* These are peak pressures formed in excess of normal atmospheric pressure by blast and shock waves.
Lees, Frank P. 1980. Loss Prevention in the Process Industries, Vol. 1. London and Boston: Butterworths.
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