首页> 外文会议>ASME Pressure Vessels and Piping Conference >DYNAMICS OF A FREE HEAVING AND PRESCRIBED PITCHING HYDROFOIL IN A TURBULENT FLOW, WITH A FLUID-STRUCTURE INTERACTION APPROACH
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DYNAMICS OF A FREE HEAVING AND PRESCRIBED PITCHING HYDROFOIL IN A TURBULENT FLOW, WITH A FLUID-STRUCTURE INTERACTION APPROACH

机译:一种湍流中自由升起和规定的俯仰水素的动态,具有流体结构相互作用方法

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This paper deals with the dynamics of an oscillating foil, describing a free heaving (vertical displacement) and prescribed pitching (rotational displacement) movement which is computed from its position in two different ways. A fluid-structure interaction approach is chosen, as the physics of the flow and the structure are strongly coupled. The flow is unsteady, turbulent and incompressible. The pressure/velocity problem is solved using SIMPLEC scheme. First, the pitching movement is considered as a given continuous function of the hydrofoil heaving position. Second, the pitching motion is performed alternately at the end of each heave cycle. For each case, two maximum angles of attack and one heaving amplitudes are studied. Preliminary results showed that a high maximum angle of attack generates more lift hydrodynamics force, but also requires more energy to perform the rotation of pitch.
机译:本文涉及摆动箔的动态,描述了从其位置计算的自由悬浮箔(垂直位移)和规定的俯仰(旋转位移)运动。选择流体结构相互作用方法,因为流动的物理和结构强烈耦合。流动是不稳定的,湍流和不可压缩的。使用SimpleC方案解决了压力/速度问题。首先,俯仰运动被认为是水翼膜的给定连续功能。其次,在每个升降周期的末端交替地执行俯仰运动。对于每种情况,研究了两个最大的攻击角度和一个高度振幅。初步结果表明,高最大攻角产生更多提升流体动力学力,但也需要更多的能量来执行间距的旋转。

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