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Effects of surface morphological structure of a brown alga miyeok (Undaria pinnatifida) on sustainable drag reduction

机译:棕色藻类(核心尾)(undariaPinnatifida)对可持续减阻的影响的影响

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摘要

Liquid-infused surfaces are a promising passive technique for frictional drag reduction. However, their practical application is limited by the easy depletion of the lubricant infused in the surface by external forces. Miyeok contains mucus on its surface, which induces a sustainable slippery surface under flow conditions. In this study, the effect of the surface morphological structures of miyeok on slippery characteristics was examined. The surface of miyeok has bump-like microstructures and tiny pores of mucilage gland cells with a re-entrant inlet configuration. A replica model of the miyeok surface was fabricated by adopting a molding process using polydimethylsiloxane. The miyeok replica model was dipped into a silicone oil solution to obtain a slippery surface property. The surface structures of fresh miyeok and the replica were checked by comparing their scanning electron microscopy images. A replica of a kelp surface was also fabricated by employing the same method. The heights of the surface microstructures of the miyeok replica were more uniform than those of the kelp replica. The sustainable drag reduction effect of the replica models’ surfaces was assessed by a sessile drop method. The liquid-infused miyeok replica surface (LIMRS) showed better sustainability than other surfaces. The slippery properties of the LIMRS were examined by measuring slip length and pressure drop. The drag reduction rates measured by the two methods were approximately 24% and 19%. The present results would be helpful for understanding the effects of the surface structure of natural miyeok on sustainable drag reduction and developing a biomimetic sustainable drag-reducing surface.
机译:液体注入的表面是一种有前途的被动技术,用于减少摩擦阻力。然而,它们的实际应用受到外力在表面中注入的润滑剂的容易耗尽的限制。 Miyeok在其表面上含有粘液,其在流动条件下诱导可持续的光滑表面。在这项研究中,研究了Miyeok表面形态结构对滑湿特性的影响。 Miyeok的表面具有凸起的微观结构和微小的粘液腺细胞,具有再参赛者入口配置。通过使用聚二甲基硅氧烷采用模塑方法制造Miyeok表面的复制模型。将Miyeok复制品模型浸入硅油溶液中以获得光滑的表面性质。通过比较它们的扫描电子显微镜图像来检查新鲜Miyeok的表面结构和复制品。通过采用相同的方法也制造海带表面的复制品。 Miyeok复制品的表面微观结构的高度比海带复制品更均匀。通过术式滴剂法评估了复制品模型表面的可持续减阻效果。液体注入的Miyeok复制表面(利马)显示出比其他表面更好的可持续性。通过测量滑动长度和压降来检查利马的光滑性质。两种方法测量的阻力降低率约为24%和19%。目前的结果将有助于理解天然Miyeok的表面结构对可持续阻力减少和开发仿生可持续减压表面的影响。

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