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Validation of CFD simulation of recoilless EOD water cannon by firing experiments with high speed camera

机译:用高速相机射击实验验证Recoilless EOD水箱的CFD模拟

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Water cannon used by Explosive Ordnance Disposal (EOD) were designed to propel a burst of water jet moving at high speed to target and disrupt an improvised explosive device (IED). The cannon could be mounted on a remotely controlled robot, so it is highly desirable for the cannon to be recoilless in order not to damage the robot after firing. In the previous work, a nonconventional design of the water cannon was conceived. The recoil was greatly reduced by-backward sprays of water through a ring of slotted holes around the muzzle. This minimizes the need to manufacture new parts by utilizing all off-the-shelf components except the tailor-made muzzle. The design was then investigated numerically by a series of Computational Fluid Dynamics (CFD) simulations. In this work, high speed camera was employed in firing experiments to capture the motion of the water jet and the backward sprays. It was found that the experimental data agreed well with the simulation results in term of averaged exit velocities.
机译:爆炸性地址处理(EOD)使用的水大炮被设计为推动高速移动的水射流,以瞄准并破坏简易爆炸装置(IED)。可以将大炮安装在远程控制的机器人上,因此对于炮炮非常理想,以便在烧制后不会损坏机器人。在以前的工作中,构思了水炮的非共同设计。通过枪口周围的开槽孔的环大大降低了水的反向喷射。除了除尘枪口之外,可以通过利用除搁架组件之外的所有搁板的组件来最大限度地减少制造新部件的需要。然后通过一系列计算流体动力学(CFD)仿真数值来计算设计。在这项工作中,采用高速摄像机在射击实验中,以捕获水射流和后向喷射的运动。发现实验数据与平均退出速度的术语相同的实验数据很好。

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