most citedCompressible Velocity Transformations for Various Noncanonical Wall-Bounded Turbulent Flows

44 citations · 71 across the 2 of their papers we have counts for

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physics.flu-dyn2023

A resolvent-based prediction framework for incompressible turbulent channel flow with limited measurements

Anjia Ying, Tian Liang, Zhigang Li +1

A new resolvent-based method is developed to predict the space-time properties of the flow field. To overcome the deterioration of the prediction accuracy with the increasing dista…

physics.flu-dyn202344 cited

Near-wall model for compressible turbulent boundary layers based on an inverse velocity transformation

Kevin Patrick Griffin, Lin Fu, Parviz Moin

In this work, a near-wall model, which couples the inverse of a recently developed compressible velocity transformation [Griffin, Fu, & Moin, PNAS, 118:34, 2021] and an algebraic t…

physics.flu-dyn2023

A scale-based study of the Reynolds number scaling for the near-wall streamwise turbulence intensity in wall turbulence

Cheng Cheng, Lin Fu

Very recently, a defect model which depicts the growth tendency of the near-wall peak of the streamwise turbulence intensity has been developed (Chen Sreenivasan, J. Fluid Mec…

physics.flu-dyn20238 cited

A five-point TENO scheme with adaptive dissipation based on a new scale sensor

Haohan Huang, Tian Liang, Lin Fu

In this paper, a new five-point targeted essentially non-oscillatory (TENO) scheme with adaptive dissipation is proposed. With the standard TENO weighting strategy, the cut-off par…

physics.flu-dyn2022

Streamwise inclination angle of wall-attached eddies in turbulent channel flows

Cheng Cheng, Wei Shyy, Lin Fu

We develop a new methodology to assess the streamwise inclination angles (SIAs) of the wall-attached eddies populating the logarithmic region with a given wall-normal height. To re…

physics.flu-dyn202228 cited

A Block-based Adaptive Particle Refinement SPH Method for Fluid-Structure Interaction Problems

Tianrun Gao, Huihe Qiu, Lin Fu

The multi-resolution method, e.g., the Adaptive Particle Refinement (APR) method, has been developed to increase the local particle resolution and therefore the solution quality wi…