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How does the free surface affect the hydrodynamics of a shallowly submerged submarine?

机译:自由表面如何影响浅层潜水潜艇的流体动力学?

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摘要

It has long been recognized that a shallowly submerged submarine traveling beneath the free surface experiences a larger resistance force in conjunction with a lift force and a pitch moment, which all vary periodically with respect to Froude number. As is well known, the periodic behavior of the forces and moment mainly has to do with the interference effects between the dominant wave systems inside the submarine wake, which predominantly originate from the bow, stern and shoulders. In naval architecture, the principal type of interference is typically considered between the bow and stem waves, where the geometry undergoes abrupt changes. However, as the aft shoulder of a shallowly submerged submarine operates in a closer proximity to the free surface compared to the stem, it is surmised that interference between the bow and aft shoulder waves may have a more significant effect on the behavior of the forces and moments. Accordingly, the main purpose of the present study is to investigate whether the interaction between the bow and aft shoulder waves or the interaction between the bow and stem waves has a more dominant effect on the hydrodynamic behavior of a shallowly submerged submarine. In this regard, the straight-ahead simulations of a generic submarine with constant forward velocities are performed in commercial code STARCCM + using URANS equations with a Reynolds stress turbulence model at submergence depths and Fronde numbers ranging from h = 1.1D to h = infinity (D: submarine diameter) and from Fn = 0.205 to Fn = 0.512, respectively. The numerical model is partially validated against the existing experimental resistance force data. The analysis of the obtained results demonstrates that in case of the shallowly submerged submarines, the interaction between the bow and aft shoulder waves has a dominant effect on the behavior of the resistance force, lift force and pitch moment.
机译:已经认识到,在自由表面下方行驶的浅层淹没的潜水艇与提升力和音高时刻一起经历更大的阻力,并且各种各样的周期性地相对于FRoude数。众所周知,力量和时刻的周期性行为主要与潜艇唤醒中的主波系统之间的干扰效应有关,这主要来自弓,船尾和肩部。在海军架构中,通常在弓和杆波之间考虑主要类型的干扰,几何形状经历突然变化。然而,由于浅层潜水潜艇的后肩与杆相比,由于杆更接近自由表面,因此弓和尾肩之间的干扰可能对力和力的行为产生更大的影响时刻。因此,本研究的主要目的是研究弓和尾肩之间的相互作用是否或弓和茎波之间的相互作用对浅层潜水潜艇的流体动力学行为具有更大的效果。在这方面,在商业代码StarCCM +中,使用urans方程在淹没深度和从H = 1.1d到H =无穷大的粉碎湍流模型中的urans方程来执行恒定前向速度的直接模拟。 D:潜艇直径)分别从Fn = 0.205到Fn = 0.512。根据现有的实验性阻力数据部分验证数值模型。所得结果的分析表明,在浅层浸没的潜艇的情况下,弓和尾肩之间的相互作用对阻力,提升力和俯仰力矩的行为具有显着的影响。

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