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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Numerical Investigation of Channel Leak Geometry for Blast Overpressure Attenuation in a Muzzle Loaded Large Caliber Cannon
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Numerical Investigation of Channel Leak Geometry for Blast Overpressure Attenuation in a Muzzle Loaded Large Caliber Cannon

机译:口径大口径大炮爆破超压衰减的通道泄漏几何数值研究。

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摘要

This study examines the effect of channel leak geometry on blast overpressure attenuation in the rear of a muzzle-loaded large caliber cannon. Effects of three primary geometric parameters including leak volume as well as number and length of channels are studied. Reduction in blast overpressure, and thus peak overpressure, is most influenced by the leak volume; however, leak volume needs to be selected carefully to limit the loss in the projectile exit velocity. Modification of the channel height in the current range has a minimal effect on peak overpressure, but the number of channels can have a significant effect due to the constriction experienced by the leaking flow, thereby limiting the attenuation. Two channel lengths are considered where the longer channel length, is found to be more effective. The best configuration showed over 50% reduction in peak overpressure at all monitored locations with about 4.8% loss in the projectile exit velocity.
机译:这项研究研究了通道泄漏几何形状对装有枪口的大口径加农炮后部爆炸冲击波超压衰减的影响。研究了三个主要几何参数的影响,包括泄漏量以及通道的数量和长度。爆破超压的降低以及峰值超压的降低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。在当前范围内更改通道高度对峰值超压的影响最小,但由于泄漏流的收缩,通道数量可能会产生重大影响,从而限制了衰减。当发现更长的信道长度更有效时,考虑两个信道长度。最佳配置显示,在所有受监视位置,峰值超压降低超过50%,而射弹出口速度损失约4.8%。

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