论文标题

撞击期间被夹杂气泡的控制和冲动压缩

Controlled and impulsive compression of an entrapped air bubble during impact

论文作者

Jain, Utkarsh, van der Meer, Devaraj

论文摘要

猛击在结构上的波浪通常伴随着空气口袋的夹带。大规模冲击通常具有快速发展的液态气体界面,因此撞击时会捕获几个气泡。虽然它在很大程度上了解了如何通过与固体结构接触的液体来产生的峰值压力,但确定如何通过冲动的冲击而加压隔离的空气口袋以及该气泡内部的最大冲击压力如何发展更具挑战性。我们通过执行良好的控制实验来研究这种气泡的巴格诺型冲动压缩,在那里我们将倒置的空心锥作为撞击器。将圆锥体浸入整个水浴中,从而包含已知和受控体积的气泡。高敏性传感器测量锥顶点处的压力。使用高速成像,我们显示了传入的液体如何变形了这种几何形状中的气泡,以及如何在气泡内注册冲击峰,可以追溯到液体射流对压力传感器的影响。我们将测得的压力与Bagnold模型进行比较,并讨论气泡中的主要共振。从变形气泡的可视化中,我们还讨论了由于周围的刚性几何形状的存在(例如LNG遏制膜中的波纹)而导致的气口变形。

Wave slamming onto a structure is often accompanied by the entrapment of an air pocket. A large scale impact typically has a rapidly evolving and disturbed liquid-gas interface, such that several bubbles are entrapped upon impact. While it is largely understood how the peak pressure is created by liquid coming into contact with the solid structure, it is more challenging to ascertain how an isolated air pocket is pressurised by an impulsive impact, and how the maximum impact pressure inside this bubble evolves. We study such a Bagnold-type impulsive compression of an air bubble by performing well-controlled experiments, where we use an inverted, hollow cone as an impactor. The cone is kept immersed throughout in a water bath, such that it encloses an air bubble of known and controlled volume. A high-sensitivity sensor measures pressures at the vertex of the cone. Using high-speed imaging we show how incoming liquid deforms the air bubble enclosed in such a geometry, and how an impact peak is registered inside the bubble, which can be traced back to the impact of a liquid jet onto the pressure sensor. We compare the measured pressures to a Bagnold model, and discuss the dominant resonances in the bubble. From visualisations of the deforming bubble, we also discuss the air-pocket's deformations, resulting from the presence of surrounding rigid geometry (such as corrugations in an LNG containment membrane).

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