首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >PHYSICAL AND THEORETICAL MODELING OF SURFACE-PIERCING HYDROFOILS FOR A HIGH-SPEED UNMANNED SURFACE VESSEL
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PHYSICAL AND THEORETICAL MODELING OF SURFACE-PIERCING HYDROFOILS FOR A HIGH-SPEED UNMANNED SURFACE VESSEL

机译:高速无表面舰船表面穿刺水翼的物理和理论建模

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The objective of this work is to investigate the performance of two pairs of negative dihedral surface-piercing (SP) hydrofoils designed especially for an unmanned surface vessel with a top speed of 120 knots in sea state two. Physical modeling of a 1/6-scaled model of the SP hydrofoil was conducted at the free-surface cavitation tunnel at the Technical University of Berlin (TUB). The SP hydrofoil feature a new type of super-cavitating profile with an annex tapered trailing edge to achieve good efficiencies in foil born conditions (60-120 knots, super-cavitating/super-ventilated regimes), as well as at take-off speeds (25-40 knots, wetted and/or partial-cavitating regimes). Preliminary results showed interesting anomalies in the trends of the measured forces with respect to the cavitation number and angle of attack for a wide range of inflow speeds. Details of the experimental study are presented along with numerical predictions obtained using finite volume RANSE solver with a volume of fluid technique to allow for a mixture flow with air/vapor and water phases. Explanation of the anomalies in the hydrodynamic performance is given.
机译:这项工作的目的是研究两对负二面体表面冲孔(SP)水翼的性能,这两种水翼是专门为无人水面舰艇设计的,它们在海上状态下最高时速为120节。在柏林工业大学(TUB)的自由表面空化隧道中对SP水翼的1/6比例模型进行了物理建模。 SP水翼具有新型的超空化型材和附加的锥形后缘,可在铝箔出生的情况(60-120节,超空化/超通风状态)以及起飞速度下实现良好的效率(25-40节,湿润和/或部分气蚀状态)。初步结果表明,在很宽的流入速度范围内,相对于空化数和攻角,测得力的趋势存在有趣的异常。介绍了实验研究的详细信息,以及使用有限体积的RANSE求解器和一定体积的流体技术获得的数值预测,以允许具有空气/蒸汽和水相的混合物流动。给出了流体动力性能异常的解释。

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