2024
DOI: 10.1088/1402-4896/ad3507
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Numerical investigation into turbulent drag reduction via the application of pufferfish spine-inspired cone microstructures in Suboff models

Lei Zhao,
Dongpo Zhu,
Xiaoming Feng
et al.

Abstract: The effective reduction of seawater drag is pivotal in enhancing the speed and minimizing the energy consumption of submarines, which has significant implications in the fields of energy and defense. Surface bionics has emerged as one of the leading techniques for drag reduction. Current research primarily focuses on replicating the groove-like structures observed on shark skins and the flexible properties of dolphin skins. However, the application of cone microstructures on submarine surfaces remains relative… Show more

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“…Unlike other underwater fish species, the pufferfish is distinguished by its unique surface, protruding bumps, and streamlined body shape, featuring a large head and a more petite body. 26 This fish has garnered considerable attention from researchers due to its unusual traits. Pufferfish have been proven to have superior hydrodynamic performance due to their pectoral, dorsal, and anal fin systems.…”
Section: ■ Introductionmentioning
confidence: 99%
“…Unlike other underwater fish species, the pufferfish is distinguished by its unique surface, protruding bumps, and streamlined body shape, featuring a large head and a more petite body. 26 This fish has garnered considerable attention from researchers due to its unusual traits. Pufferfish have been proven to have superior hydrodynamic performance due to their pectoral, dorsal, and anal fin systems.…”
Section: ■ Introductionmentioning
confidence: 99%