缩放比例
湍流
物理
雷诺数
机械
标度律
流量(数学)
统计物理学
边界(拓扑)
边界层
动能
湍流动能
层流下层
雷诺应力
经典力学
数学
数学分析
几何学
作者
Shivsai Ajit Dixit,Abhishek Gupta,Harish Choudhary,Thara V. Prabha
标识
DOI:10.1103/physrevlett.132.014001
摘要
We present a novel generalized scaling framework and predictive model for wall friction in turbulent flows. The scaling is derived from the dynamical equations, and total mean-flow kinetic energy and the velocity profile shape factor are used as surrogates for dynamical and boundary condition effects. Veracity of the present approach is assessed using data from the literature spanning unprecedented ranges of flow types, Reynolds numbers, accelerations, and history effects. Unlike previous models that solely apply to standard flows, the present framework reconciles nonstandard flows with standard flows and enables accurate estimates of wall friction in numerical simulations and experiments without resolving the viscous sublayer or using the law of the wall.Received 2 May 2023Accepted 22 November 2023DOI:https://doi.org/10.1103/PhysRevLett.132.014001© 2024 American Physical SocietyPhysics Subject Headings (PhySH)Research AreasTurbulent boundary layersFluid Dynamics
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