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Experimentaql Investigation of the Hydrodynamic Forces Acting on the Control Surfaces of a new WIG Concept

机译:WIG新概念操纵面上的流体动力的实验研究

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Fixed and vortex cavitation have a significant impact on performances of hydrofoils especially for fast vessels, where these foils are employed to control pitch and roll motion. This is the case of the SPW-02, the latest configuration of the Surface Piercing, Hydrofoil Controlled Wing-In-Ground Effect vehicle: this is a new concept vessel designed to transport payload at cruising speeds beyond the limit of conventional high-speed ships. In this paper we deal with the measurements of forces acting on the submerged control surfaces of the scaled model of the SWP-02. In particular, we obtained the force coefficients of both the after strut and the control foil at different angles of attack and Reynolds numbers. Movies and pictures of the cavitation phenomena occurring on the submerged foils have been taken and analyzed to obtain information about the grow and collapse of cavities. This paper is based upon the work performed by INSEAN as part of the Seabus-Hydaer brite Euram Project (Ref. (13)), a research program that aims to explore the feasibility of such a vehicle. In the frame of this program, INSEAN designed and built two models of the struts of Seabus-Hydaer SPW-02, that were tested in the CEIMM (Italian Navy Cavitation Tunnel) hydrodynamic tunnel in Rome.
机译:固定和涡流空化对水翼的性能有重大影响,特别是对于快船,水翼使用这些箔来控制俯仰和横摇运动。这就是SPW-02的情况,这是水刺控制的翼面地面翼效应飞机的最新配置:这是一种新型概念船,旨在以超过常规高速船极限的巡航速度运输有效载荷。在本文中,我们处理的是作用在SWP-02比例模型的浸入式控制面上的力的测量。特别是,我们获得了在不同的迎角和雷诺数下,后支撑杆和控制箔的力系数。拍摄并分析了浸没在箔片上的空化现象的电影和图片,以获取有关空洞生长和坍塌的信息。本文基于INSEAN作为Seabus-Hydaer brite Euram项目(参考资料(13))的一部分而开展的工作,该项目旨在探索这种车辆的可行性。在此计划的框架内,INSEAN设计并制造了Seabus-Hydaer SPW-02支杆的两个模型,这些模型在罗马的CEIMM(意大利海军空化隧道)水力隧道中进行了测试。

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