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Multi-body interaction effect on the energy harvesting performance of a flapping hydrofoil

机译:多体相互作用对拍打翼型能量收集性能的影响

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The effect of an upstream bluff body on energy harvesting performance of a heaving and pitching hydrofoil is investigated numerically using a two-dimensional immersed boundary method at Re = 1000. The presence of the upstream body changes flow structure around the hydrofoil and enhances efficiency significantly by two mechanisms. Mutual interaction of the vortex shed from the upstream body and the leading-edge vortex of the hydrofoil precipitates the separation of the leading-edge vortex from the hydrofoil and its streamwise transport. The incoming flow deflected by the upstream body changes the effective angle of attack for the hydrofoil. These phenomena significantly increase heaving force and pitching moment during stroke reversal, and major contribution to efficiency enhancement is from the change in pitching moment. 30% increase in efficiency, relative to a hydrofoil without an upstream body, can be achieved for same kinematics. However, the upstream body may be disadvantageous in some configurations. If the hydrofoil is placed closely to the body in transverse direction, the leading-edge vortex formation is suppressed after stroke reversal. When flapping frequency does not match with vortex shedding frequency of the upstream body, non-periodic flow structure formed around the hydrofoil can cause efficiency drop and irregular power generation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用二维浸入边界法在Re = 1000上数值研究了上游钝体对升沉和俯仰翼型的能量收集性能的影响。上游主体的存在改变了翼型周围的流动结构,并显着提高了效率两种机制。从上游主体散发出来的涡流与水翼的前缘涡流相互影响,促使前涡旋与水翼分离并沿流向传输。上游主体偏转的流入水流改变了水翼的有效迎角。这些现象在冲程反转期间显着增加了升力和俯仰力矩,而对提高效率的主要贡献来自俯仰力矩的变化。对于相同的运动学,相对于没有上游主体的翼型,效率可提高30%。但是,上游主体在某些构造中可能是不利的。如果将水翼横向放置在靠近人体的位置,则在行程反转后可以抑制前缘涡流的形成。当拍击频率与上游主体的涡旋脱落频率不匹配时,在水翼周围形成的非周期性流动结构会导致效率下降和不规则发电。 (C)2018 Elsevier Ltd.保留所有权利。

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