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COMPARATIVE STUDY OF SEAKEEPSNG ANALYSIS RESULTS FROM VARIOUS METHODS

机译:来自各种方法的海洋猎灵分析结果的比较研究

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Over the years many methods are evolved for computing ship motions and loads, i.e. seakeeping analysis. All of these methods are known as potential flow methods where fluid is assumed to be irrotational. In these methods velocity vector is represented as a gradient of scalar potential phi () known as velocity potential. One of the oldest methods is strip theory method where ship is descretized into number of 2D strips. Other methods are panel methods where entire hull is descretized into number of panels. These are also known as Green's function methods. Various formulations of Green's function do exist. In a recent development Green's function methods are extended to Rankine Panel method (RPM) where free surface in the vicinity of vessel is panelized for computations. In RPM Green's function computations are made easy. Again these methods are divided into frequency domain and time domain. Time domain methods take into account various nonlinearities which generally cannot be handled by frequency domain methods. For zero and non-zero forward speed of the vessel different formulations exist. All these methods have their own advantages and disadvantages. Hence, it is very important in the initial design stage to decide on method of seakeeping analysis. Here an attempt is made to compare the results of seakeeping analysis using various tools based on various seakeeping methods.
机译:多年来,用于计算船舶动作和负载,即海人分析,许多方法都演变。所有这些方法都被称为潜在的流动方法,其中假设流体是无引发的。在这些方法中,速度矢量表示为称为速度电位的标量势phi()的梯度。最古老的方法之一是条形理论方法,其中船舶被解释为2D条的数量。其他方法是整个船体被解释为面板数量的面板方法。这些也称为绿色的功能方法。各种绿色功能的功能确实存在。在最近的一个开发绿色的功能方法中,延伸到兰峰面板方法(RPM),其中容器附近的自由表面被镶嵌用于计算。在RPM中,绿色的功能计算变得简单。再次将这些方法分为频域和时域。时域方法考虑各种非线性,通常不能通过频域方法处理。对于血管的零和非零向前速度存在不同的配方。所有这些方法都有自己的优缺点。因此,在初始设计阶段来决定海人分析方法非常重要。这里尝试使用基于各种海守方法的各种工具比较海人分析的结果。

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