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Dynamic interaction of a bubble and discontinuous boundaries: A three-dimensional study with the fast multipole boundary element method

机译:气泡和不连续边界的动态相互作用:快速多极边界元方法的三维研究

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A high-pressure oscillating bubble near discontinuous boundaries (composed of a vertical air-backed plate with a circular opening and a free surface) may generate a high-speed water spike through the opening. This phenomenon is relevant to the survivability of the warship and marine structures subject to underwater explosions, needle-free injection, and inkjet printing. The complicated interactions among the oscillating bubble, the water spike through the opening, and the free surface wave are modelled using the dual fast multipole boundary element method. A moving five-point least-squares smoothing scheme is adopted to maintain smoothness of the surface of the opening. Multiple water jets form during the late compression stage of the bubble owing to the influence of the complex boundaries and gravity, and are directed away from the discontinuous boundaries, with the result that the jet may not impact on the broken boundary. The compression of the bubble induces the necking of the water spike passing through the opening and the formation of a cavity in the area near the opening, reducing the amount of water flooding through the opening. Nevertheless, the depth and speed of the flooding water spike due the oscillating bubble can be much larger than those in the natural flooding case (i.e., in the absence of an oscillating bubble). Both the late expansion and the compression stages of the bubble can accelerate the speed of the water spike. In the case of an opening caused by damage to the cabin wall of a marine vessel, such high-speed spikes may have significant effects on structures and facilities inside the cabin, especially for small opening sizes and short distances between bubble and opening. The results also reveal that at large depths, the dynamic behaviour of the water spike is dominated by hydrostatic pressure, and the interaction between bubble and inrushing water becomes weaker.
机译:在不连续边界(由具有圆形开口和自由表面的垂直气垫板组成)附近的高压振荡气泡可能会通过开口产生高速水刺。这种现象与遭受水下爆炸,无针注入和喷墨打印的军舰和海洋结构的生存能力有关。使用双重快速多极边界元方法模拟了振荡气泡,通过开口的水尖峰和自由表面波之间的复杂相互作用。采用移动五点最小二乘平滑方案以保持开口表面的平滑度。由于复杂的边界和重力的影响,在气泡的压缩后期,形成了多个水射流,这些水射流被引导远离不连续的边界,结果是射流可能不会影响破碎的边界。气泡的压缩引起穿过开口的水钉的缩颈并且在开口附近的区域中形成空腔,从而减少了通过开口溢水的水量。然而,由于振荡气泡引起的注水峰值的深度和速度可以比自然淹没情况(即,没有振荡气泡)大得多。气泡的后期膨胀和压缩阶段都可以加快水刺的速度。在由于船舶的船舱壁损坏而造成开口的情况下,这种高速尖峰可能会对船舱内部的结构和设施产生重大影响,尤其是对于较小的开口尺寸以及气泡和开口之间的距离较短的情况。结果还表明,在大深度处,水钉的动态行为受静水压力支配,气泡与涌水之间的相互作用变弱。

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