首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering 2004(OMAE 2004) vol.3; 20040620-25; Vancouver(CA) >VISCOUS DRIFT FORCES ON A SEMI-SUBMERSIBLE TYPE MEGA-FLOAT COMPRISED OF CIRCULAR CYLINDERS
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VISCOUS DRIFT FORCES ON A SEMI-SUBMERSIBLE TYPE MEGA-FLOAT COMPRISED OF CIRCULAR CYLINDERS

机译:半圆柱型半浮式巨型浮子上的黏性力

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摘要

An estimation of the wave drift forces acting on a semi-submersible type Mega-float supported by very many columns is very important in order to design its mooring system. It is known that the wave drift forces acting on a train of multiple vertical circular cylinders may be determined using the potential flow theory. However, it has recently been reported that the large wave drift forces acting on a large scale model of a semi-submersible type Mega-float, comprised of many simple circular cylinders, for long wave periods, cannot be explained by the potential flow theory. In addition the forces seem to have a significant influence on the design of its mooring system. At first, it seemed that the measured forces were viscous drift forces. The viscous drift forces are in proportion to the square of the wave particle velocity or the cube of the wave height. Of course, the existence of viscous drift forces has already been established, but it was considered that the forces acting are conditional in that the flow is apt to shed, for example on complex under-water shapes, on radiation problem, in larger height or longer period waves. Also it was thought that the forces acting on simple circular cylinders were negligibly small from the viewpoint of engineering applications. Finally, it was not accurately verified that the forces were viscous drift forces. In this study, model tests were carried out. The wave loads acting on a 16-column platform model and the hydrodynamic forces acting on each column of the model were simultaneously measured. The contribution of the viscous drift force component on the wave drift force acting on a train of vertical circular cylinders was also investigated in detail. It was confirmed that significant viscous drift forces act on circular cylinders for long wave periods. Furthermore an applicable region of viscous and potential components of the wave drift forces acting on vertical circular cylinders was obtained.
机译:为了设计其系泊系统,估算作用在由许多圆柱支撑的半潜式巨型浮船上的波浪漂移力非常重要。已知可以使用势流理论来确定作用在多个垂直圆柱体列上的波动力。但是,最近有报道说,由长波周期作用于由许多简单圆柱体组成的半潜式巨型浮船的大型模型的大波浪漂移力不能用势流理论来解释。另外,力似乎对其系泊系统的设计有重大影响。起初,似乎测得的力是粘性漂移力。粘性漂移力与波粒速度的平方或波高的立方成正比。当然,已经确定了粘性漂移力的存在,但据认为作用力是有条件的,因为流动易于脱落,例如在复杂的水下形状,辐射问题,更大的高度或较长的波浪。从工程应用的观点来看,还认为作用在简单圆柱上的力可以忽略不计。最后,没有准确地验证该力是粘性漂移力。在这项研究中,进行了模型测试。同时测量了作用在16柱平台模型上的波浪载荷和作用在模型各列上的流体动力。还详细研究了粘性漂移力分量对作用在垂直圆柱列上的波浪漂移力的影响。可以确定的是,在长波周期中,很大的粘性漂移力作用在圆柱体上。此外,获得了作用在垂直圆柱体上的粘性和波漂移力的潜在分量的适用区域。

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