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Pure and aerated water entry of a flat plate

机译:平板的纯净充气水

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摘要

© 2016 Author(s). This paper presents an experimental and numerical investigation of the entry of a rigid square flat plate into pure and aerated water. Attention is focused on the measurement and calculation of the slamming loads on the plate. The experimental study was carried out in the ocean basin at Plymouth University's COAST laboratory. The present numerical approach extends a two-dimensional hydro-code to compute three-dimensional hydrodynamic impact problems. The impact loads on the structure computed by the numerical model compare well with laboratory measurements. It is revealed that the impact loading consists of distinctive features including (1) shock loading with a high pressure peak, (2) fluid expansion loading associated with very low sub-atmospheric pressure close to the saturated vapour pressure, and (3) less severe secondary reloading with super-atmospheric pressure. It is also disclosed that aeration introduced into water can effectively reduce local pressures and total forces on the flat plate. The peak impact loading on the plate can be reduced by half or even more with 1.6% aeration in water. At the same time, the lifespan of shock loading is prolonged by aeration, and the variation of impulse is less sensitive to the change of aeration than the peak loading.
机译:©2016作者。本文介绍了一个刚性方形平板进入纯净水和充气水中的实验和数值研究。注意集中在板上冲击载荷的测量和计算上。实验研究是在普利茅斯大学COAST实验室的海盆中进行的。本数值方法扩展了二维水力代码以计算三维水力冲击问题。通过数值模型计算得出的结构上的冲击载荷与实验室测量值相比较。结果表明,冲击载荷包括以下独特特征:(1)具有高压力峰值的冲击载荷;(2)与接近饱和蒸汽压的非常低的大气压相关的流体膨胀载荷;以及(3)不太严重的载荷二次加载超大气压。还公开了引入水中的曝气可以有效地减小平板上的局部压力和总力。在水中充气1.6%时,板上的峰值冲击载荷可以减少一半甚至更多。同时,曝气可以延长冲击载荷的寿命,并且与峰值载荷相比,脉冲的变化对曝气变化的敏感性较小。

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