首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Sloshing design load prediction of a membrane type LNG cargo containment system with two-row tank arrangement in offshore applications
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Sloshing design load prediction of a membrane type LNG cargo containment system with two-row tank arrangement in offshore applications

机译:海上应用中带有两排液舱布置的膜式LNG货物围护系统的晃荡设计载荷预测

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This paper addresses the safety of two-row tank design by performing the extensive sloshing model tests. Owing to the uncertainties entangled with the scale law transforming the measured impact pressure up to the full scale one, so called comparative approach was taken to derive the design sloshing load. The target design vessel was chosen as 230?K LNG-FPSO with tow-row tank arrangement and the reference vessel as 138?K conventional LNG carrier, which has past track record without any significant failure due to sloshing loads. Starting with the site-specific metocean data, ship motion analysis was carried out with 3D diffraction-radiation program, then the obtained ship motion data was used as 6DOF tank excitation for subsequent sloshing model test and analysis. The statistical analysis was carried out with obtained peak data and the long-term sloshing load was determined out of it. It was concluded that the normalized sloshing impact pressure on 230?K LNG-FPSO with two-row tank arrangement is higher than that of convectional LNG carrier, hence requires the use of reinforced cargo containment system for the sake of failure-free operation without filling limitation.
机译:本文通过执行广泛的晃荡模型测试来解决两排水箱设计的安全性。由于与比例尺法则纠缠在一起的不确定性将测得的冲击压力转换为满刻度,因此采用了一种比较方法来得出设计晃荡载荷。目标设计船被选择为带有拖行式水箱布置的230?K LNG-FPSO,参考船被选择为138?K常规LNG船,该船过去的往绩没有因晃荡载荷而造成任何重大故障。从特定地点的海洋数据开始,使用3D衍射辐射程序进行船舶运动分析,然后将获得的船舶运动数据用作6DOF罐激励,以用于随后的晃荡模型测试和分析。对获得的峰值数据进行统计分析,并确定其中的长期晃荡载荷。结论是,对流式冲击力对具有两排液舱布置的230?K LNG-FPSO的规范冲击压力高于对流LNG船,因此为了不发生故障而无需填充,需要使用加强型货物围护系统局限性。

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