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Experimental Simulation of a Bow Wave

机译:弓形波的实验模拟

摘要

In flows around ships, the bow wave can entrain a significant amount of air as it breaks continuously on the free surface. The resulting air bubbles persist in the ship wake affecting its radar cross section as well as acting as cavitation nuclei in the flow entering the ship's propeller. In the present investigation, the formation of a bow wave on a ship was simulated in the laboratory using a deflecting plate in a supercritical free surface flow. The experiments were conducted at two scales. The present paper focuses on how the bow wave changes with the angles and flow parameters, information which is a necessary prerequisite for understanding the air entrainment process. Flow visualization studies were performed and an electronic point gage was used to study the three-dimensional shape of the bow waves and the manner in which they break.
机译:在船周围流动时,船首波会在自由表面上连续破裂,因此会夹带大量空气。产生的气泡持续存在于船舶尾流中,从而影响雷达截面,并在进入船舶螺旋桨的气流中充当空化核。在本研究中,在实验室中使用偏转板在超临界自由表面流中模拟了船上的船首波的形成。实验以两种规模进行。本文着重研究弓形波如何随角度和流量参数变化,这些信息是理解空气夹带过程的必要先决条件。进行了流动可视化研究,并使用电子点规测量了弓形波的三维形状及其破裂方式。

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