Laboratory Measurements of Breaking Wave Impact Pressures on a Slender Cylindrical Member

R. Manjula, S. Sannasiraj, K. Palanichamy
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引用次数: 9

Abstract

Slender cylindrical members form the major components of many of the coastal and offshore structures. These members are frequently subjected to breaking wave impact which often resulted in damages and failure of structures. In order to overcome this intricacy, it is essential to understand the physics of the breaking wave impact on offshore structural members and the resulting induced critical stresses. An experimental investigation has been carried out to measure the effect of breaking wave impact on a slender vertical cylinder. Simultaneous qualitative visual observations and quantitative pressure measurements were made to appreciate the impact induced effect. The induced impact pressure on the cylinder varies with the intensity of wave breaking and the relative location of the cylinder. The impact pressure is maximum when the wave profile reaches its maximum steepness just before the crest destabilization. Impact pressure observed due to a severe plunging wave is about nine times higher than due to spilling. The pressure rise time is found to be an important parameter in dictating the nature of impact.
细长圆柱形构件破碎波冲击压力的实验室测量
细长的圆柱形构件构成了许多沿海和近海建筑的主要组成部分。这些构件经常受到破碎波的冲击,往往导致结构的破坏和破坏。为了克服这种复杂性,有必要了解破碎波对海上结构构件的物理影响以及由此产生的临界应力。为测量破碎波对细长圆柱的冲击效应,进行了实验研究。同时进行了定性的视觉观察和定量的压力测量,以了解冲击引起的效果。随着破波强度的不同和破波位置的不同,圆筒受到的冲击压力也不同。冲击压力在波峰失稳前达到最大陡度时最大。观测到的冲击压力是由剧烈的俯冲波造成的,大约是溢出造成的9倍。发现压力上升时间是决定冲击性质的一个重要参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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