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Computational hydrodynamic simulations for an underwater axisymmetric hemisphere-cylinder hull-form at incidence

机译:水下轴对称半球圆柱体入射时的计算流体力学模拟

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This contribution presents a computational simulation for a generic hull shape with attached short pin-protuberance for its hydrodynamic characteristics. This work is a part of a large framework of numerical simulation and experimentation carried out for blunted head-forms of hemispheric shapes for determination of aero-hydrodynamic coefficients and static stability features. Results are presented for a clean hull-form and with the pin-protuberance, as static axial and circumferential pressure distribution on the surface, calculated at a fixed velocity and at different angle of attacks, under non-cavitating depth and velocity. It is shown that a suitably located short lateral pin has an adequate effectiveness to control pitch maneuver of an underwater hemisphere-cylinder hull-form. In view of that, a suitable pin-height adjustment commensurate to pitch attitude trajectory corrections is a workable idea, and the concept has potential of effective pitch attitude control of the hemisphere-cylinder hull-form.DOI: http://dx.doi.org/10.3329/jname.v11i1.16725
机译:该贡献为具有水动力特性的附加短销-凸起的通用船体形状提供了计算仿真。这项工作是对半球形钝头形状进行数值模拟和实验的大型框架的一部分,以确定空气动力系数和静态稳定性特征。结果以干净的船体形式和带销隆起的形式给出,在非空洞深度和速度下,以固定速度和不同迎角计算表面上的静态轴向和圆周压力分布。结果表明,适当定位的短侧向销具有足够的有效性来控制水下半球圆柱体形式的俯仰操纵。鉴于此,与俯仰姿态轨迹校正相对应的合适的销高调节是可行的想法,并且该概念具有对半球圆柱体形式的有效俯仰姿态控制的潜力。DOI:http://dx.doi .org / 10.3329 / jname.v11i1.16725

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