实弹射击及底排出口构型对弹丸阻力影响的三维数值研究

Q4 Engineering Advances in Military Technology Pub Date : 2022-05-15 DOI:10.3849/aimt.01529
M. Aziz, A. Ibrahim, A. Riad, M. Ahmed
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引用次数: 0

摘要

在弹体底部排放气体是一种有效的减阻技术。据信,底部出口的设计可以影响气体排出的模式,从而降低阻力。目前的研究旨在解决这种依赖性,在以前的研究中没有澄清,通过检查两种不同的底排出口配置作用在弹丸上的阻力减少。第一种配置包括一个中心圆孔,而另一种配置被修改为包括一个较小的中心圆孔和四个具有等效总面积的环形槽。在三维计算域上进行了数值模拟,以估计阻力并探索每种构型的基流场。将不同马赫数下的计算结果与两种基本构型弹体基于射程射击的平均阻力进行了比较。此外,通过与不同马赫数下的发射数据的比较,进行了不同的模拟,预测了通过修改后的配置的真实出血模式。
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Live Firing and 3D Numerical Investigation of Base Bleed Exit Configuration Impact on Projectile Drag
Base bleed, in which gases are discharged at the base of projectile, is confirmed to be an effective drag reduction technique. Itis believed that the design of base exit can impact the pattern of gas bleeding and, hence, the level of drag reduction. The present study is aimed to address this dependence that was not clarified in previous studies by examining the reduction in drag acting on a projectile with two different base bleed exit configurations. The first configuration includes a central circular orifice while the other is modified to include a smaller central circular orifice and four annular slots with equivalent total area. Numerical simulations on 3‑D computational domain have been conducted to estimate drag and to explore the base flowfield for each configuration. The computational results at different Mach numbers have been compared with the mean drag based on range shooting for projectiles with both base configurations. In addition, different simulations have been performed to predict the real pattern of bleeding through the modified configuration based on the comparison with firing data at different Mach numbers.
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来源期刊
Advances in Military Technology
Advances in Military Technology Engineering-Civil and Structural Engineering
CiteScore
0.90
自引率
0.00%
发文量
11
审稿时长
12 weeks
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