TY - JOUR
T1 - Experimental Study of the Non-equilibrium Explosion Venting in Spherical Vessel
AU - Zhen, Ya Ya
AU - Wang, Zhi Rong
AU - Yan, Chen
N1 - Publisher Copyright:
© 2017 The Author(s).
PY - 2018
Y1 - 2018
N2 - Explosion venting offers overpressure protection from potential industrial explosion hazards. This work experimentally studied the non-equilibrium explosion venting of methane-air mixtures in 22L and 110L spherical vessels, under various venting areas and pressures. The results showed that venting area had an obvious influence on explosion venting pressure and the small venting area can hardly protect the vessel from the explosion hazards. When A/V2/3 is less than 0.00855, pressure will rise after explosion venting and there is linear relationship between the maximum explosion venting pressure and venting pressure. When A/V2/3 is bigger than 0.025, it is near to the equilibrium venting and independent on the venting pressure. When the A/V2/3 is up to 0.016, abnormal overpressure occurs under 0.1353 MPa venting pressure. For unconstrained explosion venting, Pred in 22L and 110L spherical vessels is equal and (dP/dt)max accords with Cube-Root law for venting in the same A/V2/3. The prediction curves of (dP/dt)max vs V1/3 for unconfined vent different A/V2/3 and the prediction curves of Pred vs venting pressure under different A/V2/3 are provided.
AB - Explosion venting offers overpressure protection from potential industrial explosion hazards. This work experimentally studied the non-equilibrium explosion venting of methane-air mixtures in 22L and 110L spherical vessels, under various venting areas and pressures. The results showed that venting area had an obvious influence on explosion venting pressure and the small venting area can hardly protect the vessel from the explosion hazards. When A/V2/3 is less than 0.00855, pressure will rise after explosion venting and there is linear relationship between the maximum explosion venting pressure and venting pressure. When A/V2/3 is bigger than 0.025, it is near to the equilibrium venting and independent on the venting pressure. When the A/V2/3 is up to 0.016, abnormal overpressure occurs under 0.1353 MPa venting pressure. For unconstrained explosion venting, Pred in 22L and 110L spherical vessels is equal and (dP/dt)max accords with Cube-Root law for venting in the same A/V2/3. The prediction curves of (dP/dt)max vs V1/3 for unconfined vent different A/V2/3 and the prediction curves of Pred vs venting pressure under different A/V2/3 are provided.
KW - (dP/dt)
KW - P
KW - methane-air
KW - non-equilibrium explosion venting
UR - http://www.scopus.com/inward/record.url?scp=85045267979&partnerID=8YFLogxK
U2 - 10.1016/j.proeng.2017.12.109
DO - 10.1016/j.proeng.2017.12.109
M3 - 会议文章
AN - SCOPUS:85045267979
SN - 1877-7058
VL - 211
SP - 1052
EP - 1057
JO - Procedia Engineering
JF - Procedia Engineering
T2 - 2017 8th International Conference on Fire Science and Fire Protection Engineering, ICFSFPE 2017
Y2 - 28 October 2017 through 29 October 2017
ER -