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The NATO generic destroyer - a shared geometry for collaborative research into modelling and simulation of shipboard helicopter launch and recovery

机译:北约通用驱逐舰 - 用于建模和船舶直升机发射和恢复模拟和仿真的共享几何

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The helicopter-ship dynamic interface is the environment above the landing deck of a ship where a helicopter pilot has to control the aircraft while contending with a moving deck and an unsteady airflow known as the ship airwake. Research into understanding this environment has included modelling the airwake using wind tunnel studies and Computational Fluid Dynamics, and has often used the Simple Frigate Shape (SFS), a generic ship geometry representative of a naval frigate. This paper reviews the contribution that the SFS has made to research into the helicopter-ship dynamic interface, and introduces a new ship geometry for future research. The new ship, developed within a NATO Research Task Group, is the NATO Generic Destroyer (NATO-GD), a concept ship with a simplified geometry that is more representative of a modern helicopter-enabled combat ship with a stealthy superstructure. As well as introducing the NATO-GD as a common platform for research, the paper also introduces a number of ship motion profiles to encourage new research that will include the effect of ship motion on the airwake. It is anticipated that future research on a common ship, with prescribed motion and adopting a common helicopter will lead to improved or new modelling methodologies.
机译:直升机发货动态接口是船舶着陆甲板上方的环境,直升机飞行员必须控制飞机,同时使用移动的甲板和被称为船舶飞行器的不稳定气流。理解这一环境的研究包括使用风洞研究和计算流体动力学建模飞行员,并且经常使用简单的护卫舰形状(SFS),这是一种代表海军护脉的通用船舶几何形状。本文综述了SFS已经对直升机发货动态接口进行研究的贡献,并为未来的研究引入了新的船舶几何形状。在北约研究任务组中发展的新船是北约通用驱逐舰(北约GD),一个概念船,具有简化的几何形状,更像是一个具有隐身的上层建筑的现代直升机的战斗船。除了将北约GD作为研究的共同平台之外,本文还引入了许多船舶运动型材,以鼓励新的研究将包括船舶运动对飞行员的影响。预计将在共同船上进行未来的研究,规定的运动和采用共同的直升机将导致改进或新的建模方法。

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