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Study of the relevant geometric parameters of the channel leak method for blast overpressure attenuation for a large caliber cannon

机译:大口径大炮爆炸超压衰减通道泄漏法相关几何参数的研究

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This study examines the effect of relevant geometric parameters on blast overpressure attenuation and projectile exit velocity loss due to the channel leak method on a muzzle-loaded large caliber cannon. There are four basic geometric parameters which can be varied independently. These include the number of channels, channel length, channel height and channel width. From these basic parameters, three relevant parameters are selected which are expected to be most influential. These three relevant parameters include total leak volume, channel length, and total aspect ratio. Reduction in blast overpressure, and thus peak overpressure, is most affected by the leak volume, however, leak volume needs to be selected carefully to limit the loss in the projectile exit velocity. On the other hand, use of shorter channels is found to be detrimental for peak overpressure attenuation while a lower total aspect ratio has a positive effect. The best configuration, CLM-A1, shows over 50% reduction in peak overpressure at all monitored locations with about 4.8% loss in the projectile exit velocity which translates to the largest average Figure of Merit of 0.534. Shock structure and strength are also examined for the three best leak configurations, CLM-A1, CLM-E1 and CLM-E2, as well as the baseline configuration. Published by Elsevier Ltd.
机译:这项研究研究了有关几何参数对炮口加载的大口径加农炮的通道泄漏方法造成的爆炸超压衰减和弹丸出口速度损失的影响。有四个基本几何参数可以独立更改。这些包括通道数,通道长度,通道高度和通道宽度。从这些基本参数中,选择三个最有影响力的相关参数。这三个相关参数包括总泄漏量,通道长度和总长宽比。爆破超压的减小以及峰值过压的减小受泄漏量的影响最大,但是,需要谨慎选择泄漏量以限制弹丸出口速度的损失。另一方面,发现使用较短的通道不利于峰值超压衰减,而较低的总纵横比则具有积极的作用。最佳配置CLM-A1在所有受监控的位置显示峰值超压降低了50%以上,而射弹出口速度损失了约4.8%,这转化为最大平均品质因数0.534。还检查了三种最佳泄漏配置(CLM-A1,CLM-E1和CLM-E2)以及基准配置的冲击结构和强度。由Elsevier Ltd.发布

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