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NONLINEAR EFFECTS OF WAVE HEIGHTS ON COUPLED SLOSHING AND SEAKEEPING RESPONSES

机译:高度对耦合的晃动和倾斜反应的非线性影响

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With increased activities in natural gas transportation and offshore exploration in the past decades, assessment of sloshing in liquefied natural gas (LNG) tanks has become an important practical issue. In this paper, we focus on the deterministic calculation of the coupled sloshing and ship motions in regular wave conditions. An in-house numerical code is used to solve the seakeeping problem coupled with the sloshing dynamics. The numerical method adopts a weakly nonlinear approach using impulse response functions for the seakeeping problem. Nonlinear Froude-Krylov and hydrostatic forces are directly evaluated in the time domain. A three-dimensional finite difference method is applied to solve the sloshing problem. The numerical method is validated by comparing with experimental results in the literature. The developed numerical method is used to analyze the nonlinear effects of wave heights.
机译:在过去的几十年中,随着天然气运输和海上勘探活动的增加,对液化天然气(LNG)储罐晃荡的评估已成为一个重要的实际问题。在本文中,我们专注于规则波浪条件下晃荡和船舶运动耦合的确定性计算。内部数字代码用于解决海上航行问题以及晃荡动力学。该数值方法采用弱非线性方法,该方法使用脉冲响应函数来解决海上维护问题。在时域中直接评估非线性Froude-Krylov和静水力。应用三维有限差分法解决晃荡问题。通过与文献中的实验结果进行比较,验证了数值方法的有效性。所开发的数值方法用于分析波高的非线性影响。

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