首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering 2004(OMAE 2004) vol.1 pt.B; 20040620-25; Vancouver(CA) >SIMPLIFIED METHOD TO ASSESS DYNAMIC RESPONSE OF JACKET TYPE OFFSHORE PLATFORMS SUBJECTED TO WAVE LOADING
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SIMPLIFIED METHOD TO ASSESS DYNAMIC RESPONSE OF JACKET TYPE OFFSHORE PLATFORMS SUBJECTED TO WAVE LOADING

机译:评估波浪载荷作用下的夹克式海洋平台动力响应的简化方法。

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Dynamic response of offshore platforms subjected to wave and current is of fundamental importance in analysis. The first step in dynamic analysis is computing dynamic characteristics of the structure. Because of pile-soil-structure and fluid-structure interactive effects in the dynamic behavior, the model is very complex. In this paper a simplified model for dynamic response of jacket-type offshore structures subjected to wave loading is used. Since wave loads on offshore platforms vary with time, they produce dynamic effects on structures. In the model used in this paper, all of the structural elements are modeled as vertical equivalent cylinders that are in the direction of the wave crest. In the simplified model, the degrees of freedom are considered at the seabed, jacket horizontal elevations and topside center of gravity. The stiffness properties of the model are computed considering the stiffnesses of the vertical bracings, legs and piles. The structural mass is considered as lumped nodal masses at horizontal elevations and topside center of gravity. The hydrodynamic added mass in addition to the structural masses was modeled at jacket horizontal elevations. In the simplified model, for computing wave loading, the projected areas of all members in the direction of the wave crest are considered. For the wave loading calculation, Morison equation is considered. The fluid velocities are calculated for the submerged portions of the structures using a computer program developed for this purpose. In this program both Airy and Stokes wave theories can be used. This model can be used to assess dynamic properties and responses of jacket type offshore structures. The model is used to assess the response of three jacket-type offshore platforms in Persian Gulf subjected to loadings due to several waves. The results in terms of dynamic characteristics and responses were compared with the more accurate analysis results using SACS software. The results are in a good agreement with the SACS analysis outputs, i.e. structural periods, mode shapes and dynamic response.
机译:波浪和电流作用下的海上平台的动态响应在分析中至关重要。动力分析的第一步是计算结构的动力特性。由于桩-土-结构和流-固相互作用对动力特性的影响,该模型非常复杂。在本文中,采用了简化的模型来应对波浪载荷作用下的夹套式海上结构。由于海上平台的波浪载荷随时间变化,因此会对结构产生动态影响。在本文使用的模型中,所有结构元素都被建模为在波峰方向上的垂直等效圆柱体。在简化模型中,自由度是在海床,夹套水平高程和顶侧重心处考虑的。考虑到竖向支撑,腿和桩的刚度,计算模型的刚度属性。结构质量被认为是水平标高和顶侧重心的集总结块。除了结构质量外,还对夹层水平标高上的水力附加质量进行了建模。在简化模型中,为计算波浪载荷,考虑了所有成员在波峰方向上的投影面积。对于波浪荷载计算,考虑了莫里森方程。使用为此目的开发的计算机程序为结构的淹没部分计算流体速度。在该程序中,可以使用艾里波理论和斯托克斯波理论。该模型可用于评估外套式海上结构的动力特性和响应。该模型用于评估波斯湾中三个外套型海上平台在数次波浪作用下的载荷作用下的响应。使用SACS软件将动态特性和响应方面的结果与更准确的分析结果进行比较。结果与SACS分析输出(即结构周期,模式形状和动态响应)非常吻合。

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