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Internal Flow Analysis of FPU Oil Separator Considering Six Degrees-of-Freedom Ship Movement

机译:考虑六自由度船舶运动的FPU油水分离器内部流动分析

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摘要

A practical sloshing analysis for a top side equipment of a FPU (Floating Production Unit) is presented considering six degrees of freedom of motion for the FPU. Since a FPU has various kinds of oil separator, it is important to stabilize the free surface level of the fluid filled in the oil separator tank in order to produce of crude oil without interruption. In the present work, the effect of the floating body motion on the free surface in the tank is investigated. The motion of FPU is calculated according to the three dimensional panel method. The motion response in the frequency domain is converted to the time domain by inverse Fourier transform. The six-DOF motion of the FPU is used as a time variant boundary condition in the CFD analysis. The internal flow is assumed as laminar for the sake of the concise computation. The VOF model with geometrical reconstruction is applied for simulating the free surface in the tank. The first order of upwinding and time marching scheme are used. To evaluate the free surface level in the tank, the distance between the tank bottom and the free surface in a specified position is picked up. From the analysis, it is concluded that the effect of the floating body motion could be negligible in a sloshing point of view under the given ocean environmental condition.
机译:考虑到FPU的六个运动自由度,对FPU(浮动生产单元)的顶部设备进行了实用的晃动分析。由于FPU具有各种类型的油分离器,因此重要的是要稳定填充在油分离器箱中的流体的自由表面液位,以便不间断地生产原油。在本工作中,研究了浮体运动对水箱自由表面的影响。 FPU的运动是根据三维面板方法计算的。通过逆傅立叶变换将频域中的运动响应转换为时域。 FPU的六自由度运动在CFD分析中用作时变边界条件。为了简化计算,内部流被假定为层流。具有几何重构的VOF模型用于模拟水箱中的自由表面。使用第一级上风和时间行进方案。为了评估储罐中的自由表面液位,需要拾取储罐底部与指定位置的自由表面之间的距离。从分析得出的结论是,在给定的海洋环境条件下,从晃动的角度来看,浮体运动的影响可以忽略不计。

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