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Donghyun You

Pohang University of Science and Technology · 工学

研究室紹介

Professor Donghyun You's research lab specializes in computational fluid dynamics and turbulence modeling, with a focus on complex flow phenomena in turbomachinery, such as tip-leakage flows, vortical structures, and cavitation. The lab employs advanced numerical methods, including large-eddy simulation (LES) and immersed boundary techniques, to investigate viscous losses, unsteady flow dynamics, and flow control strategies. Recent work also extends into data-driven approaches, such as generative adversarial networks (GANs), for predicting typhoon tracks using satellite imagery. The lab integrates high-fidelity simulations with innovative modeling techniques to address challenges in aero- and hydrodynamics.

large-eddy simulationtip-leakage flowturbomachineryturbulence modelingdata-driven flow prediction

Research Overview

Papers
218
Total Citations
3,197
Papers (5y)
72
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
72total
2022
2023
2024
2025
2026
Citations per year (5y)
295total
20222023202420252026

Selected Papers

15
1
Article|214 citations·2008
Active control of flow separation over an airfoil using synthetic jets
Donghyun You, Parviz Moin
SJR Q1Journal of Fluids and Structures
Computational MechanicsEngineering
2
Article|194 citations·2007
Large-eddy simulation analysis of mechanisms for viscous losses in a turbomachinery tip-clearance flow
Donghyun You, Meng Wang, Parviz Moin, Rajat Mittal
SJR Q1Journal of Fluid Mechanics

The tip-leakage flow in a turbomachinery cascade is studied using large-eddy simulation with particular emphasis on understanding the underlying mechanisms for viscous losses in the vicinity of the tip gap. Systematic and detailed analysis of the mean flow field and turbulence statistics has been made in a linear cascade with a moving endwall. Gross features of the tip-leakage vortex, tip-separation vortices, and blade wake have been revealed by investigating their revolutionary trajectories and

Computational MechanicsEngineering
3
Article|178 citations·2007
A dynamic global-coefficient subgrid-scale eddy-viscosity model for large-eddy simulation in complex geometries
Donghyun You, Parviz Moin
SJR Q1Physics of FluidsOA

An improvement of the dynamic procedure of Park et al. [Phys. Fluids 18, 125109 (2006)] for closure of the subgrid-scale eddy-viscosity model developed by Vreman [Phys. Fluids 16, 3670 (2004)] is proposed. The model coefficient which is globally constant in space but varies in time is dynamically determined assuming the “global equilibrium” between the subgrid-scale dissipation and the viscous dissipation of which utilization was proposed by Park et al. Like the Vreman model with a fixed coeffic

Computational MechanicsEngineering
4
Article|164 citations·2019
Prediction of a typhoon track using a generative adversarial network and satellite images
Mario Rüttgers, Sang-Seung Lee, Soohwan Jeon, Donghyun You
SJR Q1Scientific ReportsOA

Tracks of typhoons are predicted using a generative adversarial network (GAN) with satellite images as inputs. Time series of satellite images of typhoons which occurred in the Korea Peninsula in the past are used to train the neural network. The trained GAN is employed to produce a 6-hour-advance track of a typhoon for which the GAN was not trained. The predicted track image of a typhoon favorably identifies the future location of the typhoon center as well as the deformed cloud structures. Err

Atmospheric ScienceEarth and Planetary Sciences
5
Article|139 citations·2006
Effects of tip-gap size on the tip-leakage flow in a turbomachinery cascade
Donghyun You, Meng Wang, Parviz Moin, Rajat Mittal
SJR Q1Physics of FluidsOA

The effects of tip-gap size on the tip-leakage vortical structures and velocity and pressure fields are investigated using large-eddy simulation, with the objective of providing guidelines for controlling tip-leakage cavitation and viscous losses associated with the tip-leakage flow. The effects of tip-gap size on the generation and evolution of the end-wall vortical structures are discussed by investigating their evolutionary trajectories and the mean velocity field. The tip-leakage jet and tip

Aerospace EngineeringEngineering
6
Book Chapter|106 citations·2009
Active Control of Flow Separation Over an Airfoil Using Synthetic Jets
Donghyun You, Parviz Moin
IUTAM bookseries
Computational MechanicsEngineering
7
Article|100 citations·2004
Computational Methodology for Large-Eddy Simulation of Tip-Clearance Flows
Donghyun You, Rajat Mittal, Meng Wang, Parviz Moin
SJR Q1AIAA Journal

A large-eddy-simulation-based flow solver that combines an immersed-boundary technique with a curvilinear structured grid has been developed to study the temporal and spatial dynamics of an incompressible rotor-tip-clearance flow. The overall objective of these simulations is to determine the underlying mechanisms for low-pressure fluctuations downstream of the rotor near the end wall. Salient features of the numerical methodology, including the mesh topology, the immersed boundary method, the t

Computational MechanicsEngineering
8
Article|98 citations·2007
Effects of hydrophobic surfaces on the drag and lift of a circular cylinder
Donghyun You, Parviz Moin
SJR Q1Physics of FluidsOA

Effects of hydrophobic surfaces on the drag and lift of a circular cylinder at Reynolds numbers of 300 and 3900 are investigated using numerical simulations. A cylinder of which the entire surface is no-slip, a cylinder of which the entire surface is hydrophobic, and cylinders with alternating circumferential bands of slip and no-slip conditions are considered. The width of the alternating bands ranges from 0.5λz to 2λz, where λz is a spanwise characteristic wavelength in the near wake. At Reyno

Computational MechanicsEngineering
9
Article|89 citations·2012
An implicit ghost-cell immersed boundary method for simulations of moving body problems with control of spurious force oscillations
Jinmo Lee, Donghyun You
SJR Q1Journal of Computational Physics
Computational MechanicsEngineering
10
Article|76 citations·2007
Vortex Dynamics and Low-Pressure Fluctuations in the Tip-Clearance Flow
Donghyun You, Meng Wang, Parviz Moin, Rajat Mittal
SJR Q2Journal of Fluids Engineering

The tip-clearance flow in axial turbomachines is studied using large-eddy simulation with particular emphasis on understanding the unsteady characteristics of the tip-leakage vortical structures and the underlying mechanisms for cavitation-inducing low-pressure fluctuations. A systematic and detailed analysis of the velocity and pressure fields has been made in a linear cascade with a moving end-wall. The generation and evolution of the tip-leakage vortical structures have been investigated thro

Computational MechanicsEngineering
11
Article|74 citations·2008
Discrete conservation principles in large-eddy simulation with application to separation control over an airfoil
Donghyun You, Frank Ham, Parviz Moin
SJR Q1Physics of FluidsOA

An unstructured-grid large-eddy simulation (LES) technique is used to investigate the turbulent flow separation over an airfoil with and without synthetic-jet control. Numerical accuracy and stability on arbitrary shaped mesh elements at high Reynolds numbers are achieved using a finite-volume discretization of the incompressible Navier–Stokes equations based on higher-order conservation principles—i.e., in addition to mass and momentum conservation, kinetic energy conservation in the inviscid l

Computational MechanicsEngineering
12
Article|65 citations·2005
Analysis of stability and accuracy of finite-difference schemes on a skewed mesh
Donghyun You, Rajat Mittal, Meng Wang, Parviz Moin
SJR Q1Journal of Computational Physics
Computational MechanicsEngineering
13
Article|65 citations·2019
A numbering-up metal microreactor for the high-throughput production of a commercial drug by copper catalysis
Gwang‐Noh Ahn, Taejong Yu, Hyune‐Jea Lee, Ki-Won Gyak, Jiho Kang, Donghyun You, Dong‐Pyo Kim
SJR Q1Lab on a Chip

Microreactors are emerging as an efficient, sustainable synthetic tool compared to conventional batch reactors. Here, we present a new numbering-up metal microreactor by integrating a flow distributor and a copper catalytic module for high productivity of a commercial synthetic drug. A flow distributor and an embedded baffle disc were manufactured by CNC machining and 3D printing of stainless steel (S/S), respectively, whereas a catalytic reaction module was composed of 25 copper coiled capillar

Biomedical EngineeringEngineering
14
Article|63 citations·2005
A high-order Padé ADI method for unsteady convection–diffusion equations
Donghyun You
SJR Q1Journal of Computational Physics
Computational MechanicsEngineering
15
Article|60 citations·1998
Control of Flow-Induced Noise Behind a Circular Cylinder Using Splitter Plates
Donghyun You, Haecheon Choi, Myung‐Ryul Choi, Shin-Hyoung Kang
SJR Q1AIAA Journal

Laminar vortex sheddings behind a circular cylinder with and without splitter plates attached to the cylinder base at the Reynolds numbers of 100 and 160 are simulated by solving the unsteady two-dimensional incompressible Navier-Stokes equations. The Strouhal number, lift, and drag rapidly change with the length of the splitter plate. Acoustic source functions are obtained from the computed near-field velocity and pressure using the Curie's solution of the Lighthill acoustic analogy. I

Computational MechanicsEngineering

Research Areas

Computational MechanicsAerospace EngineeringStatistical and Nonlinear PhysicsEnvironmental EngineeringMechanical EngineeringMechanics of Materials

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