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Effect of vent conditions on internal overpressure time-history during a vented explosion

机译:通风条件对爆炸期间内部过度压力历史的影响

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Vented explosion experiments of ethylene-air mixtures were conducted in a custom-designed 2 x 1.2 x 0.6 m(3) steel chamber under three vent conditions to study the effect of vent size and vent type on overpressure under different concentrations. The experiment results show that vented explosion behaviors are related to various vent conditions. The rupture pressure of vent film at different concentrations are the same with static vent pressure while the rupture pressure of vent panel increases as the concentration approaches the stoichiometric concentration. Double-peak pressure curves were recorded under small size vent conditions, while overpressure curves with only one peak were recorded under large size venting. Analysis indicates that the peak overpressure and rate of pressure increase under large size venting are mainly affected by the rupture pressure and the concentration of combustible gas, respectively. Moreover, secondary explosion, due to the backflow of external gas, will occur in high concentrations under large size vent conditions. In the case of small size vent condition, the value of first peak P-1 is mainly determined by the rupture pressure, while the value of second peak P-2, and the rates of increase to P-1 and P-2 are mainly affected by the concentration. There is a clear difference between the recorded values of P-2 at two measurement points, which indicates that there is a pressure gradient induced by small size vent conditions due to the change of flow cross-section. This work provide a practical reference for the safety design of the explosion venting.
机译:在三个通风条件下在定制的2×1.2×0.6M(3)钢室中,在定制的2×1.2×0.6M(3)钢室中进行乙烯 - 空气混合物的爆炸实验,以研究在不同浓度下的通风口尺寸和排气类型对过压的影响。实验结果表明,排气的爆炸行为与各种通风条件有关。当浓度接近化学计量浓度时,不同浓度以不同浓度的排气膜的破裂压力与静态通风压力增加相同。在小尺寸的排气条件下记录双峰压力曲线,而在大尺寸通气下只记录过一个峰的过压曲线。分析表明,大尺寸通气下的峰值过压和压力增加率分别主要受破裂压力和可燃气体浓度的影响。此外,由于外部气体的回流,二次爆炸将在大尺寸排气条件下以高浓度发生。在小尺寸排出条件的情况下,第一峰P-1的值主要由破裂压力决定,而第二峰P-2的值,以及增加到P-1和P-2的增加率主要是受浓度的影响。在两个测量点的P-2的记录值之间存在明显差异,这表明由于流量横截面的变化,由于流量横截面的变化,通过小尺寸排气条件引起的压力梯度。这项工作为爆炸通风的安全设计提供了实用的参考。

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