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Unsteady Panel Method For Flapping Foil

机译:拍打箔的非定常板法

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A computer program based on a potential-flow panel method was developed to evaluate the hydrodynamic forces acting on a harmonically heaving and pitching two-dimensional rigid foil. A new formulation of the unsteady Kutta condition, postulating a finite pressure difference at the trailing edge of the oscillating foil, is proposed and implemented in the numerical procedure. A comparison with published experimental data [Anderson JM, Streitlien K, Barrett DS, Triantafyllou MS. Oscillating foils of high propulsive efficiency. J Fluid Mech 1998:360(1):41 -72; Read DA, Hover FS, Triantafyllou MS. Forces on oscillating foils for propulsion and maneuvering. J Fluids Struct 2003;17(1):163-83; Schouveiler L, Hover FS, Triantafyllou MS. Performance of flapping foil propulsion. J Fluids Struct 2005;20(7):949-59] showed good agreement with the computational results. The analysis of the experimental results indicates clearly that robust computational procedures are necessary for reliable data processing in terms of calibration, noise removal, correction factors, etc. The proposed two-dimensional approach to the problem is currently being developed as a three-dimensional procedure that will address the unsteady flow effects such as inertia-related ones that are currently omitted.
机译:开发了一种基于电位流面板方法的计算机程序,以评估作用在二维刚性箔片上的谐波升沉和俯仰的流体动力。提出了一种新的非稳态库塔条件公式,该公式在振荡箔的后缘假设了一个有限的压差,并在数值过程中实现了。与已发布的实验数据进行比较[Anderson JM,Streitlien K,Barrett DS,Triantafyllou MS。高推进效率的振动箔片。 J流体力学1998:360(1):41 -72;阅读DA,Hover FS,Triantafyllou MS。力作用在振动箔片上以进行推进和操纵。 J流体结构2003; 17(1):163-83; Schouveiler L,Hover FS,Triantafyllou MS。扑翼推进性能。 J Fluids Struct 2005; 20(7):949-59]与计算结果显示出很好的一致性。对实验结果的分析清楚地表明,就校准,噪声去除,校正因子等而言,可靠的数据处理对于可靠的数据处理是必需的。针对该问题的拟议二维方法目前正在作为三维程序开发。可以解决非稳态流动效应,例如目前已忽略的与惯性相关的流动效应。

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