Abstract Interceptor design for optimum trim control and minimum resistance of planing boats
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Interceptor design for optimum trim control and minimum resistance of planing boats

机译:拦截器设计,实现刨船的最佳装饰控制和最小电阻

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AbstractInterceptors are vertical blades installed symmetrically aft of the craft. This article aims to investigate the main geometrical (height and span length) parameters in interceptors. Different Models with and without interceptors at different heights and spans have been analyzed based on the finite volume method and SIMPLE algorithm using dynamic mesh. In order to validate CFD results, the grid convergence index (GCI method) has been used to estimate the uncertainties caused by grid-spacing and time-step. Although it has been proved that the interceptors are very useful in trim control and resistance reduction, choosing wrong size interceptors could not only destroy their effectiveness, but also endanger the planing boat due to the creation of a strong moment leading to negative trim. The results of this study show that among all effective variables, the boundary layer thickness (h) at the stern (where the interceptor is installed), is far more important than, some other particular parameter, on interceptor performance and should be taken into account in estimating the interceptor height (d) and span (s). Generally, the interceptor height should not be higher than 60 percent of boundary layer thickness at transom. For optimum efficiency, when the interceptor height equals 60 percent of the boundary layer, the interceptor span length should be seven times as much as the interceptor height. At the end, based on Reynolds number the paper presents three figures, setting the basis for optimal interceptor sizes for its use in planing boats.]]>
机译:<![cdata [ 抽象 拦截器是垂直刀片安装的垂直刀片对称的刀柄。本文旨在调查拦截器中的主要几何(高度和跨度长度)参数。基于使用动态网格的有限体积方法和简单算法,已经分析了具有和不具有不同高度和跨度的拦截器的不同模型。为了验证CFD结果,Grid收敛指数(GCI方法)已被用于估计网格间距和时间步骤引起的不确定性。虽然已经证明,拦截器在修剪控制和阻力下非常有用,但选择错误的大小拦截器不仅可以摧毁其有效性,而且由于创建了强大的时刻导致刨船,也危及了导致负面修剪的强烈时刻。本研究结果表明,在所有有效的变量中,船尾(安装拦截器的边界层厚度(H)比拦截器性能的一些其他特定参数更重要,并且应考虑到估计拦截高度(d)和跨度。通常,拦截器高度不应高于横梁的边界层厚度的60%。为了获得最佳效率,当拦截高度等于60%的边界层时,拦截器跨度长度应为拦截器高度的七倍。最后,基于Reynolds编号,本文提出了三个数字,为​​其在刨船中使用的最佳拦截器尺寸的基础。 ]]>

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