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Mitigation of propeller kinetic energy losses with boundary layer ingestion and swirl recovery vanes

机译:用边界层摄取和旋流回收叶片减轻螺旋桨动能损失

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In order to improve the efficiency of propeller propulsion systems, two existing ideas for mitigation of the kinetic energy losses and the resulting aerodynamic interactions are discussed by means of potential based design methods and time accurate RANS CFD simulations. The first concept, a pusher propeller mounted at the aft fuselage using the principle of boundary layer ingestion, intends to reduce the axial kinetic energy loss. The second concept of swirl recovery vanes behind a wing mounted tractor propeller tries to lessen the rotational kinetic energy loss. A power benefit of 7% is found for the first concept. The additional interaction drag of 11% is the main source for further improvement. For the second concept propulsive efficiency gains of 0:4% in a cruise condition to 2:6% in a high thrust condition are found without wing. The addition of a wing has shown to decrease these gains by the reduced swirl recovery of the wing and design changes to the swirl recovery vanes for this configuration are necessary for further improvement.
机译:为了提高螺旋桨推进系统的效率,通过基于潜在的设计方法和时间准确的RAN CFD模拟讨论了两个现有的用于减轻动力能损失和所产生的空气动力学相互作用的现有思路。第一个概念,使用边界层摄入原理安装在AFT机身上的推动器螺旋桨,意图减少轴向动能损失。翼架安装拖拉机推进器后面的旋流恢复叶片的第二个概念试图减少旋转动能损失。为第一个概念找到了7%的电力效益。 11%的额外互动阻力是进一步改进的主要来源。对于第二个概念,在没有机翼的情况下,在巡航条件下巡航条件下的0:4%的推进效率提升为2:6%。通过翼的涡流回收的减小的涡流恢复和对这种配置的旋流回收叶片的设计变化来说,增加了这些收益是必要的,以进一步改进。

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