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A parametric methodology for the preliminary design of SWATH hulls

机译:用于船体初步设计的参数方法

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This paper presents a parametric computer-based technique to build a B-spline model of a SWATH (Small Waterplane Area Twin Hull) ship hull. The method that is presented uses naval architecture parameters such as Displacement, Waterplane Area (Awp), Centre of Buoyancy (LCB), and Centre of Flotation (LCF) to obtain a geometric definition of the hull that is not based on conic shapes (cylinders, cones or paraboloids) as it is normally used in the literature, but on Chebychev polynomials and B-spline curves and surfaces. With the use of Chebychev functions, a given area, centroid, and even inertia can be imposed on a curve that is later modelled with a B-spline curve. In this way, the SWATH struts can be designed with a given Waterplane area, LCF and inertia, and then combined with a SWATH Lower Hull definition to obtain the ship's displacement and LCB. The positions of LCB and LCF gain importance in the seakeeping behaviour of SWATH ships, whilst the waterplane plays a role on their stability characteristics. Applying the method presented in this work, all these variables can be controlled.
机译:本文介绍了基于参数化计算机的技术,用于构建SWATH(小水上花区双壳)船船体的B样条模型。所提出的方法使用海军架构参数,例如位移,水上插入区域(AWP),浮力中心(LCB)和浮选中心(LCF),以获得不基于圆锥形状的船体的几何定义(圆柱体锥体或抛物面)通常在文献中使用,而是在Chebychev多项式和B样条曲线和表面上。通过使用Chebychev功能,可以对稍后用B样条曲线建模的曲线施加给定区域,质心甚至惯性。以这种方式,可以使用给定的水上平面区域,LCF和惯性设计血管支柱,然后与SWATH下船体定义组合以获得船舶的位移和LCB。 LCB和LCF的职位和LCF在Swath船舶的海保行为中获得了重要性,而水上潜水者则对其稳定特征发挥作用。应用本作工作中呈现的方法,可以控制所有这些变量。

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