首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering >THE SHADOW EFFECT ON THE DYNAMICS OF A SHUTTLE TANKER CONNECTED IN TANDEM WITH A FPSO
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THE SHADOW EFFECT ON THE DYNAMICS OF A SHUTTLE TANKER CONNECTED IN TANDEM WITH A FPSO

机译:用FPSO串联连接的穿梭油轮动力学的影子效应

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The ship based Floating Production Storage and Offloading system (FPSO) has been largely used in the recent offshore oil exploration. In most of the cases the oil stored in FPSO is offloaded to a shuttle ship that is connected by a hawser in tandem configuration. The problem of dynamic instability that arises in several ship mooring systems, like SPM and SMS subjected to the environmental forces, may also be present in the tandem system. Although the tandem mooring is a common procedure in the offshore oil industry, there are few publications related to the theme. Among these, there are none concerned with the environmental forces interference caused by FPSO on shuttle ship, here called as shadow effect. It is well known that the dynamic behaviour of a moored ship, in particular SPM system, is hardly affected by the environmental forces. Therefore, it is expected that shadow effect on the environmental forces acting on the shuttle ship will cause great influence in its dynamic behaviour, and consequently in the dynamics of whole FPSO-shuttle system. These phenomena could be observed in experiments with single point moored shuttle ships with and without the FPSO in upstream position. Therefore, the shadow effect should be considered in analysis of dynamic behaviour of two ships connected in tandem. Among the commercial simulators that analyse tandem systems there are none that consider shadow effect, making their analysis different from the real world. This paper presents an empirical model of the current shadow effect. The model was implemented in a numerical simulator, named DYNASIM. The comparison between numerical results and experimental one showed that the proposed model is effective.
机译:基于船舶的浮动生产存储和卸载系统(FPSO)已在最近的海上石油勘探中使用。在大多数情况下,将存储在FPSO中的油卸载到由Hawser在串联配置中连接的班车运输。在串联系统中也可能存在于几个船舶系泊系统中出现的动态不稳定性,如SPM和SPM和SMS,也可能存在于串联系统中。虽然串联停泊是海上石油行业的常见程序,但很少有与主题有关的出版物。其中,没有涉及由FPSO在班车上造成的环境势力干扰,这里称为阴影效果。众所周知,停泊船舶,特别是SPM系统的动态行为几乎不受环境力的影响。因此,预计对行动船舶上行动的环境力量的阴影效应将对其动态行为产生很大影响,因此在整个FPSO-Shuttle系统的动态中。可以在实验中观察到使用单点系泊船舶的实验中,并且没有FPSO在上游位置。因此,应在分析串联连接的两艘船的动态行为中考虑阴影效果。在分析串联系统的商业模拟器中,没有考虑阴影效果,从而分析与现实世界不同。本文介绍了当前暗影效果的实证模型。该模型是在一个名为Dynasim的数值模拟器中实现的。数值结果和实验之间的比较显示,所提出的模型是有效的。

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