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COUPLED SURGE-HEAVE-PITCH DYNAMIC MODELING OF SPAR-MOON POOL-RISER INTERACTION

机译:SPAR-MOON池-管相互作用的波峰-波动-耦合动力模型

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Due to the ongoing rather intense development of deep water gas and oil fields, the technical community has been increasingly focusing its attention to the dynamic behavior of Spar floating structures. Spar dynamics exhibits a highly nonlinear behavior due to the presence of various components such as mooring lines, moonpool, and risers (Spanos et al., 2005). In this regard Gupta et al, 2008a, have studied the reduction of the heave response in a single degree-of-freedom spar model due to the oscillations of water entrapped in the moonpool through the partially closed bottom plates.In this paper a novel coupled six-degree-of-freedom analytical model of a Spar system tensioned by TTR risers is proposed. The model accounts for the interactions among spar hull motions (heave, surge and pitch), the riser motion (heave and surge), and the moonpool. This model involves six coupled nonlinear differential equations comprising nonlinearity terms associated not only with stiffness and damping but also with inertia terms. A dynamic analysis is performed by subjecting the model to JONSWAP ocean wave spectrum compatible extreme forces (corresponding to the 100 yr wave); and to moments applied to the center of gravity computed by means of standard motion program. Both numerical and semi-analytical techniques (equivalent linearization including inertial terms) are used for the determination of the response of the proposed dynamic model both in the time and frequency domains. Some parameter study results are reported, including ones pertaining to the dependence of the spar motion on the open guide plates.
机译:由于深水煤气和石油领域的持续相当强烈发展,技术界越来越关注其对翼梁浮动结构的动态行为。由于存在各种部件,例如系泊线,月亮池和立管(Spanos等,2005),SPAR Dynamics表现出高度非线性行为。在这方面,Gupta等人,2008A,已经通过部分封闭的底板捕获的水振荡,研究了在单一自由度的间距模型中降低了单一自由度的血管模型。 在本文中,提出了一种新的TTR提升器张紧的SPAR系统的六度自由度分析模型。该模型占SPAR HULL运动(升降,浪涌和音高)之间的相互作用,提升管运动(升降机和浪涌)和月球池。该模型涉及六个耦合的非线性微分方程,其包括不仅用刚度和阻尼的非线性术语,而且具有惯性术语。通过对模型进行jonswap海浪谱兼容的极端力(对应于100年波)来执行动态分析;并致力于通过标准运动程序计算的重心。数值和半分析技术(包括惯性术语等等同线性化)用于确定在时间和频率域中所提出的动态模型的响应。报告了一些参数研究结果,包括与翼梁运动对开放式板上的依赖性有关的结果。

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