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Cavitation Induction by Projectile Impacting on a Water Jet

机译:射弹对水射流造成的空化诱导

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Following the work of Field et al. [4], who experimentally visualised cavity formation and shock propagation in impacted liquids at high velocities, the present study focuses on the simulation of the high velocity impact of a solid projectile on a water jet. The undeformable solid projectile is modelled through a direct forcing Immersed Boundary Method. The simulation is carried out using an explicit density based compressible solver, developed by Kyriazis et al. [6], which employs a two-phase flow model and includes phase change. This study gives a better insight on the phenomena following the impact of solids on liquids, including shock propagation and vapour formation, and demonstrates the capabilities of the presented Immersed Boundary Method to handle compressible cavitating flows.
机译:在Field等人的工作之后。 [4],本研究专注于高速度在高速度的受影响液体中的实验性可视化腔形成和冲击繁殖,侧重于模拟水射流上的固体射弹的高速撞击。无法形成的固体射弹通过直接迫使浸入边界法进行模型。使用kyriazis等人开发的显式密度的可压缩求解器进行模拟。 [6]采用两相流模型并包括相变。该研究对液体对液体冲击的现象提供了更好的洞察,包括冲击传播和蒸汽形成,并证明了所呈现的浸没边界法处理可压缩空腔流动的能力。

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