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首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Influence of length-to-diameter ratio and static activation pressure on pressure generation and flame propagation in vented gas explosions
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Influence of length-to-diameter ratio and static activation pressure on pressure generation and flame propagation in vented gas explosions

机译:长径比和静态激活压力对排气爆炸中压力产生和火焰传播的影响

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摘要

On drafting a new European standard "Gas Explosion Venting Protective Systems" a lack of data has been identified for venting at low activation pressures. Therefore, experiments have been performed on vented gas explosions using bursting foils of different strength. Cylinders of different volumes and length-to-diameter ratios (L/D) have been used as explosion vessels. The vessels were made from glass to make the flame propagation observable by a high-speed video system. For the dependence of the reduced explosion pressure P_(red) on L/D a maximum occurred for L/D about 3. This could be shown for vessels of different volumes and for different vent sizes. Using bursting foils of different strength it could be shown that the pressure evolution after the vent had opened, depended on the activation pressure only, when the vent size was to small to prevent a second peak in the pressure-time curve.
机译:在起草新的欧洲标准“气体爆炸通风防护系统”时,已经发现缺乏在低激活压力下进行通风的数据。因此,已经使用不同强度的破裂箔片对排气爆炸进行了实验。具有不同体积和长径比(L / D)的气缸已用作爆炸容器。容器由玻璃制成,可通过高速视频系统观察到火焰的传播。由于降低的爆炸压力P_(red)对L / D的依赖性,L / D的最大值约为3。对于不同体积和不同排气口的容器,可以显示出此最大值。使用不同强度的破裂箔片,可以证明,排气口打开后,排气口尺寸变小以防止压力-时间曲线出现第二个峰值时,排气口打开后的压力演变仅取决于激活压力。

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