Effect of Air Fraction on Force Coefficients in Oscillatory Flow

M. Vested, E. D. Christensen
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Abstract

The forces on marine and offshore structures are often affected by spilling breakers. The spilling breaker is characterized by a roller of mixed air and water with a forward speed approximately equal to the wave celerity. This high speed in the top of the wave has the potential to induce high wave loads on upper parts of the structures. This study analyzed the effect of the air content on the forces. The analyses used the Morison equation to examine the effect of the percentage of air on the forces. An experimental set-up was developed to include the injection of air into an otherwise calm water body. The air-injection did introduce a high level a turbulence. It was possible to assess the amount of air content in the water for different amounts of air-injection. In the mixture of air and water the force on an oscillating square cylinder was measured for different levels of air-content, — also in the case without air. The measurements indicated that force coefficients for clear water could be use in the Morison equation as long as the density for water was replaced by the density for the mixture of air and water.
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振荡流动中空气分数对力系数的影响
对海洋和近海结构物的作用力经常受到溢浪破浪的影响。溢出式破碎机的特点是有一个前进速度近似等于波速的混合空气和水的滚筒。波浪顶部的高速度有可能在结构的上部引起高波浪荷载。本研究分析了空气含量对力的影响。分析使用莫里森方程来检验空气百分比对力的影响。一种实验装置被开发出来,包括向平静的水体注入空气。空气喷射确实带来了高水平的湍流。对于不同的空气注入量,可以评估水中的空气含量。在空气和水的混合物中,在不同水平的空气含量下,在没有空气的情况下,对摆动的方形圆柱体的力进行了测量。测量结果表明,只要用空气和水混合物的密度代替水的密度,清水的力系数就可以用莫里森方程来表示。
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