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Wake energy analysis method applied to the Boxprop propeller concept

机译:尾波能量分析方法应用于Boxprop螺旋桨概念

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摘要

Inspired by Prandtl's theory on aircraft wings with minimum induced drag, the authors have introduced a double-bladed propeller, the Boxprop, intended for high-speed flight. The basic idea is to join the propeller blades pairwise at the tip to decrease tip vortex strength and improve mechanical properties compared to a conventional propeller.The present work develops a wake analysis method allowing an energy breakdown of the flow as well as making the irreversibility of the flow explicit by using the entropy lost work concept. The method quantifies the strength of flow features such as tip vortices and wakes in terms of engine power. In contrast to existing work, this method removes assumptions of uniform flow, no radial flow, and constant static pressure in the propeller jet.The results of the wake analysis method can be summarized into three key findings 1) the energy in the tip-vortex of the Boxprop design is comparatively speaking non-existent, 2) the swirl energy level of the Boxprop is higher and this turbomachine is thus more in need of a downstream counter-rotating blade to recover the energy, 3) the Boxprop develops a much larger part of its thrust closer to the hub. Analysis of this aspect of the flow reveals that blade interference approaching the tip, where the blades in a pair are more closely spaced, is quite pronounced. In turn, this indicates that maximum efficiency Boxprop designs are more likely to be obtained by having larger axial separation of the two blades.
机译:受普兰特关于最小机翼阻力的机翼理论的启发,作者引入了一种双桨螺旋桨Boxprop,用于高速飞行。基本思想是在桨叶的尖端成对连接桨叶,以降低桨叶涡旋强度并与常规螺旋桨相比提高机械性能。本工作开发了一种尾流分析方法,该方法可以使流能量分解并确保不可逆性。通过使用熵损失功概念来明确表示流量。该方法根据发动机功率量化了诸如涡旋和尾流等流动特征的强度。与现有工作相比,该方法消除了螺旋桨射流中均匀流动,无径向流动和恒定静压力的假设。尾流分析方法的结果可归纳为三个关键发现1)尖端涡旋中的能量相对而言,Boxprop设计的设计根本就不存在; 2)Boxprop的涡旋能级更高,因此该涡轮机更需要下游的反向旋转叶片来回收能量; 3)Boxprop变得更大其推力的一部分更靠近轮毂。对流的这一方面的分析表明,接近尖端的叶片干扰非常明显,在尖端中一对叶片之间的间距更近。反过来,这表明通过使两个叶片的轴向间距更大,更有可能获得最大效率的Boxprop设计。

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