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Numerical Simulation of Self-Propelled Steady Jet Propulsion at Intermediate Reynolds Numbers: Effects of Orifice Size on Animal Jet Propulsion

机译:中间雷诺数自推进稳态喷射推进的数值模拟:孔口大小对动物喷射推进的影响

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Most marine jet-propelled animals have low swimming efficiencies and relatively small jet orifices. Motivated by this, the present computational fluid dynamics study simulates the flow for a jet-propelled axisymmetric body swimming steadily at intermediate Reynolds numbers of order 1–1000. Results show that swimming-imposed flow field, drag coefficients, swimming efficiencies, and performance index (a metric comparing swimming speeds sustained by differently sized orifices ejecting the same volume flow rate) all depend strongly on orifice size, and orifice size affects the configuration of oppositely signed body vorticity and jet vorticity, thereby affecting wake and efficiency. As orifice size decreases, efficiencies decrease considerably, while performance index increases substantially, suggesting that, for a given jet volume flow rate, a smaller orifice supports faster swimming than a larger one does, albeit at reduced efficiency. These results support the notion that most jet-propelled animals having relatively small jet orifices may be an adaptation to deal with the physical constraint of limited total volume of water available for jetting, while needing to compete for fast swimming. Finally, jet orifice size is discussed regarding the role of jet propulsion in jet-propelled animal ecology, particularly for salps that use two relatively large siphons to respectively draw in and expel water.
机译:大多数海洋喷气机推进的动物都有低的游泳效率和相对小的喷射孔。由此同时,本发明的计算流体动力学研究模拟了喷气机推进的轴对称体液在中间雷诺数量1-1000的中间游泳的流动。结果表明,游泳施加的流场,拖动系数,游泳效率和性能指数(通过不同尺寸的孔口持续的游泳速度通过喷射相同的体积流量的不同尺寸的孔)都依赖于孔口尺寸,并且孔口尺寸影响相反签署的身体涡流和喷射涡度,从而影响唤醒和效率。由于孔口尺寸减小,效率显着降低,而性能指数显着增加,表明对于给定的喷射体积流量,较小的孔口比较大的孔更快地游泳,尽管效率降低。这些结果支持大多数喷射孔孔的大多数喷射的动物的观点可能是适应处理有限总量的用于喷射的有限总量的物理限制,同时需要竞争快速游泳。最后,关于喷射喷射在喷射的动物生态学中的作用讨论了喷射孔尺寸,特别是对于使用两个相对大的虹吸管分别抽取和排出水的沙利。

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