首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Freeman Scholar Review: Passive and Active Skin-Friction Drag Reduction in Turbulent Boundary Layers
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Freeman Scholar Review: Passive and Active Skin-Friction Drag Reduction in Turbulent Boundary Layers

机译:Freeman Scholar评论:湍流边界层中被动和主动的皮肤摩擦减阻

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摘要

A variety of skin-friction drag reduction (FDR) methods for turbulent boundary layer (TBL) flows are reviewed. Both passive and active methods of drag reduction are discussed, along with a review of the fundamental processes responsible for friction drag and FDR. Particular emphasis is given to methods that are applicable to external hydrodynamic flows where additives are diluted by boundary layer entrainment. The methods reviewed include those based on engineered surfaces (riblets, large eddy breakup devices (LEBUs), and superhydrophobic surfaces (SHS)), those based on additives (polymer injection and gas injection), and those based on morphological alterations in the boundary layer flow (air layers and partial cavity formation). A common theme for all methods is their disruption of one or more of the underlying physical processes responsible for the production of skin-friction drag in a TBL. Opportunities and challenges for practical implementation of FDR techniques are also discussed.
机译:综述了湍流边界层(TBL)流动的各种减摩减阻方法(FDR)。讨论了减阻的被动方法和主动方法,并对导致摩擦阻力和FDR的基本过程进行了回顾。特别强调了适用于外部水动力流的方法,其中通过边界层夹带来稀释添加剂。审查的方法包括基于工程表面的方法(肋,大型涡流破碎装置(LEBU)和超疏水表面(SHS)),基于添加剂的方法(聚合物注入和气体注入)以及基于边界层形态变化的方法流动(空气层和部分空腔的形成)。所有方法的一个共同主题是,它们破坏了一个或多个导致TBL中皮肤摩擦阻力产生的潜在物理过程。还讨论了实际实施FDR技术的机遇和挑战。

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