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DYNAMIC ANALYSIS FOR AN INTERNALLY COUPLED FLUID/RISER SYSTEM

机译:内部耦合流体/立管系统的动力学分析

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Risers are fluid conduits from subsea equipment to surface floating production platforms. The integrity of a riser system plays a very important role in deepwater developments. A top-tensioned riser generally consists of outer casing, inner casing and tubing. The pipes are coupled either through fluids in the annuli or through intermediate guides (centralizers) or through both. This paper investigates the dynamic analysis for such an internally coupled fluid/ riser system.This paper first presents a theoretical formulation for a general riser system coupled with fluids in the annuli and centralizers between pipes. Hydrodynamic forces associated with the viscous fluid in between concentric cylinders are considered. An effective dynamic stiffness matrix method is then developed to evaluate the added mass and damping influence of the fluid on the natural frequencies and the dynamic response of the coupled riser system. A riser example is used to illustrate the fluid coupling impact on the system's dynamic performance. The coupling through the fluid and centralizers can be optimally designed such that an inner pipe acts as a vibration absorber to the outer casing.
机译:提升管是从海底设备到地面浮动生产平台的流体导管。立管系统的完整性在深水开发中起着非常重要的作用。顶部张紧的提升管通常由外壳,内壳和管道组成。管道通过环形空间中的流体或通过中间导管(集中器)或通过两者连接。本文研究了这种内部耦合的流体/立管系统的动力学分析。 本文首先介绍了一种通用的立管系统的理论公式,该系统与环空中的流体和管道之间的扶正器相结合。考虑与同心圆柱体之间的粘性流体相关的流体动力。然后,开发了一种有效的动态刚度矩阵方法,以评估流体的附加质量和阻尼对固有频率和耦合立管系统的动态响应的影响。立管示例用于说明流体耦合对系统动态性能的影响。通过流体和扶正器的联接可以被最佳地设计,使得内管充当外壳的减振器。

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