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首页> 外文期刊>Journal of Marine Science and Engineering >Numerical Modelling of a Mussel Line System by Means of Lumped-Mass Approach
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Numerical Modelling of a Mussel Line System by Means of Lumped-Mass Approach

机译:集中质量法对贻贝线系统的数值模拟

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This paper describes a numerical model to simulate the behavior of a mussel longline system, subjected to environmental loads such as waves and current. The mussel line system consists of an anchor, a mooring chain, a long backbone line, mussel collector lines and buoys. The lumped-mass open-source code MoorDyn is modified for the current application. Waves are modelled as a directional spectrum, and the current as a homogeneous velocity field with an exponential vertical distribution. A Coulomb model is implemented to model the horizontal friction between nodes and the seabed. Cylindrical buoys with three translational degrees-of-freedom are modelled by extending the simplified hydrodynamic model in use for line’s internal nodes with additional properties like cylinder height, diameter and mass. Clump weights are modelled in a similar way. For validation purposes, the results of the present software are compared with the commercially available lumped-mass based mooring dynamic software, OrcaFlex.
机译:本文描述了一个数值模型,用于模拟贻贝延绳钓系统在波浪和电流等环境载荷下的行为。贻贝线系统由锚,系泊链,长主干线,贻贝集水器线和浮标组成。集总质量开源代码MoorDyn已针对当前应用程序进行了修改。波被建模为方向性谱,电流被建模为具有指数垂直分布的均匀速度场。实施库仑模型来建模节点与海床之间的水平摩擦。具有三个平移自由度的圆柱浮标是通过扩展简化的流体动力学模型来建模的,该简化的流体力学模型用于生产线的内部节点,并具有圆柱高度,直径和质量等其他属性。丛集权重以类似方式建模。为了验证,将本软件的结果与市售的基于集总质量的系泊动态软件OrcaFlex进行比较。

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