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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Effect of pitch-to-diameter ratio and row-spacing-to-diameter ratio of venting holes on evolution process of air film around a vertically launched underwater vehicle
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Effect of pitch-to-diameter ratio and row-spacing-to-diameter ratio of venting holes on evolution process of air film around a vertically launched underwater vehicle

机译:间距到直径比和排空到直径与直径与直径比在垂直发射的水下车辆周围空气膜中的进化过程中的影响

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摘要

Equipping a slice of air film on a vehicle's exterior can realize the goal of load reduction and attitude control in the vertical water-emerging process. Similar to ventilated cavity, the performance of this air film depends on the venting structures and their arrangements. Based on the simulation of vehicle's water-emerging processes with exhaust, the effect of pitch-to-diameter ratio (s/d) and row-spacing-to-diameter ratio (Delta l/d) of venting structures on evolution process of air film is investigated. Results indicate that the increase of s/d promotes the fast growth of air film, but makes the circumferential merging of adjacent air films slow. Two rows of inline-arrangement venting structures enhance the exhaust. And with the increase of Delta l/d, the air film extends faster accompanied with its thickness enlarged. Further increase of s(1)/d(1) for double-row-hole cases (based on the reasonable design of s/d and Delta l/d) brings about little improvement to the air film, while, "more-smaller" holel can promote the circumferential coalescing of adjacent air films near venting structures, and provide more opportunities for hole2 being covered by air film considering the rotation of vehicle.
机译:在车辆外部装配一片空气膜可以实现垂直水渗透过程中负载减少和姿态控制的目标。类似于通风腔,该空气膜的性能取决于通风结构及其布置。基于车辆的排气速度的仿真,倾斜度比(S / D)和排径与径向 - 间距与直径比(Delta L / D)对空气进化过程的影响电影被调查。结果表明,S / D的增加促进了空气膜的快速生长,但是使相邻空气膜的周向合并慢。两排内联排列通风结构增强了排气。随着ΔL/ d的增加,空气薄膜伴随着其厚度放大的速度更快。进一步增加了双行孔壳的S(1)/ D(1)(基于S / D和DELTA L / D的合理设计)带来空气膜的几乎没有改善,而“更小“Holel可以促进靠近通风结构附近的相邻空气膜的周向聚结,并且考虑到车辆的旋转,为空气膜覆盖的孔2提供更多机会。

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