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Hyungmin Park

Seoul National University · 工学

研究室紹介

Professor Hyungmin Park's research lab specializes in fluid dynamics and experimental hydrodynamics, with a strong focus on drag reduction mechanisms in turbulent and transitional flows. The lab investigates superhydrophobic surfaces, passive flow control devices, and bio-inspired morphologies—such as those found in flying fish—to enhance performance in both aquatic and aerial environments. Key research directions include skin-friction and form-drag reduction, wake manipulation using micro-scale tabs, and the dynamics of deformable bubbles and droplets near boundaries. The lab combines advanced experimental techniques, such as high-speed imaging and wind-tunnel testing, with large-eddy simulations to achieve fundamental insights into complex flow phenomena.

drag reductionsuperhydrophobic surfacesflow controlturbulent boundary layersbio-inspired hydrodynamics

Research Overview

Papers
217
Total Citations
4,186
Papers (5y)
46
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
46total
2022
2023
2024
2025
2026
Citations per year (5y)
253total
20222023202420252026

Selected Papers

15
1
Article|196 citations·2014
Superhydrophobic turbulent drag reduction as a function of surface grating parameters
Hyungmin Park, Guangyi Sun, Chang‐Jin Kim
SJR Q1Journal of Fluid MechanicsOA

Abstract Despite the confirmation of slip flows and successful drag reduction (DR) in small-scaled laminar flows, the full impact of superhydrophobic (SHPo) DR remained questionable because of the sporadic and inconsistent experimental results in turbulent flows. Here we report a systematic set of bias-free reduction data obtained by measuring the skin-friction drags on a SHPo surface and a smooth surface at the same time and location in a turbulent boundary layer (TBL) flow. Each monolithic sam

Computational MechanicsEngineering
2
Article|147 citations·2006
Drag reduction in flow over a two-dimensional bluff body with a blunt trailing edge using a new passive device
Hyungmin Park, Dongkon Lee, Woo-Pyung Jeon, Seonghyeon Hahn, Jeonglae Kim, Jungwoo Kim, Jin Woo Choi, Haecheon Choi
SJR Q1Journal of Fluid Mechanics

In this paper, we present a new passive control device for form-drag reduction in flow over a two-dimensional bluff body with a blunt trailing edge. The device consists of small tabs attached to the upper and lower trailing edges of a bluff body to effectively perturb a two-dimensional wake. Both a wind-tunnel experiment and large-eddy simulation are carried out to examine its drag-reduction performance. Extensive parametric studies are performed experimentally by varying the height and width of

Computational MechanicsEngineering
3
Review|137 citations·2021
Superhydrophobic drag reduction in turbulent flows: a critical review
Hyungmin Park, Chang‐Hwan Choi, Chang‐Jin Kim
SJR Q1Experiments in FluidsOA

Abstract Superhydrophobic (SHPo) surfaces have been investigated vigorously since around 2000 due in large part to their unique potential for hydrodynamic frictional drag reduction without any energy or material input. The mechanisms and key factors affecting SHPo drag reduction have become relatively well understood for laminar flows by around 2010, as has been reviewed before [Lee et al. Exp Fluids 57:176 (2016)], but the progress for turbulent flows has been rather tortuous. While improved fl

Surfaces, Coatings and FilmsMaterials Science
4
Article|119 citations·2010
Aerodynamic characteristics of flying fish in gliding flight
Hyungmin Park, Haecheon Choi
SJR Q1Journal of Experimental Biology

The flying fish (family Exocoetidae) is an exceptional marine flying vertebrate, utilizing the advantages of moving in two different media, i.e. swimming in water and flying in air. Despite some physical limitations by moving in both water and air, the flying fish has evolved to have good aerodynamic designs (such as the hypertrophied fins and cylindrical body with a ventrally flattened surface) for proficient gliding flight. Hence, the morphological and behavioral adaptations of flying fish to

Aerospace EngineeringEngineering
5
Article|103 citations·2021
Deep learning-based automated and universal bubble detection and mask extraction in complex two-phase flows
Yewon Kim, Hyungmin Park
SJR Q1Scientific ReportsOA

Abstract While investigating multiphase flows experimentally, the spatiotemporal variation in the interfacial shape between different phases must be measured to analyze the transport phenomena. For this, numerous image processing techniques have been proposed, showing good performance. However, they require trial-and-error optimization of thresholding parameters, which are not universal for all experimental conditions; thus, their accuracy is highly dependent on human experience, and the overall

Biomedical EngineeringEngineering
6
Article|75 citations·2007
Mixing enhancement behind a backward-facing step using tabs
Hyungmin Park, Woo-Pyung Jeon, Haecheon Choi, Jung Yul Yoo
SJR Q1Physics of Fluids

Mixing enhancement behind a backward-facing step is experimentally investigated using multiple tabs located at the edge of the backward-facing step. The Reynolds number is 24000 based on the free-stream velocity and step height with a turbulent boundary layer flow at the inlet. A parametric study is performed to find the optimal tab configuration of minimizing the reattachment length. The parameters of the tab are its height and spanwise width, and the spanwise spacing between two adjacent tabs.

Computational MechanicsEngineering
7
Article|62 citations·2015
Near-wall rising behaviour of a deformable bubble at high Reynolds number
Hyeonju Jeong, Hyungmin Park
SJR Q1Journal of Fluid Mechanics

The dynamics of a large deformable bubble ( $\mathit{Re}\sim \mathit{O}(10^{3})$ ) rising near a vertical wall in quiescent water is experimentally investigated. The reference (without the wall) rising path of the considered bubble is a two-dimensional zigzag. For a range of wall configurations (i.e. initial wall distance and boundary condition), using high-speed shadowgraphy, various rising behaviours such as periodic bouncing, sliding, migrating away, and non-periodic oscillation without colli

Biomedical EngineeringEngineering
8
Article|54 citations·2019
Water entry of rounded cylindrical bodies with different aspect ratios and surface conditions
Nayoung Kim, Hyungmin Park
SJR Q1Journal of Fluid Mechanics

In the present study, we experimentally investigate water surface deformation due to the impact of rounded cylindrical projectiles with different aspect ratios (1.0–8.0). The subsequent jet and splash formation is closely related to the dynamics of an underwater cavity. To control the cavity formation, two kinds of surface conditions (smooth and rough) are applied to the front parts of the projectiles, and two impact speeds are considered. The Froude, Reynolds and Weber numbers are in the ranges

Computational MechanicsEngineering
9
Article|53 citations·2016
Study of bubble-induced turbulence in upward laminar bubbly pipe flows measured with a two-phase particle image velocimetry
Minki Kim, Jun Ho Lee, Hyungmin Park
SJR Q1Experiments in Fluids
Biomedical EngineeringEngineering
10
Article|51 citations·2017
Wake structures behind an oscillating bubble rising close to a vertical wall
Joohyoung Lee, Hyungmin Park
SJR Q1International Journal of Multiphase Flow
Biomedical EngineeringEngineering
11
Article|49 citations·2016
Design of an ultra-durable silicon-based battery anode material with exceptional high-temperature cycling stability
Hyungmin Park, Sinho Choi, Sung-Jun Lee, Yoon‐Gyo Cho, Gaeun Hwang, Hyun‐Kon Song, Nam‐Soon Choi, Soojin Park
SJR Q1Nano Energy
Electrical and Electronic EngineeringEngineering
12
Article|47 citations·2015
Two-Dimensional Analysis of Air–Water Interface on Superhydrophobic Grooves under Fluctuating Water Pressure
Linfeng Piao, Hyungmin Park
SJR Q1Langmuir

We theoretically investigate the collapse (i.e., wetting) transition of the air-water interface on fully submerged superhydrophobic surfaces with micro-sized grooves under the fluctuating water pressure and the diffusion of the trapped air pockets. For the analysis, a nonlinear oscillator equation to describe the dynamics of the two-dimensional air-water interface on a single groove is derived, which is solved for a range of parameters of groove geometry and harmonically fluctuating water pressu

Surfaces, Coatings and FilmsMaterials Science
13
Article|45 citations·2014
Novel design of silicon-based lithium-ion battery anode for highly stable cycling at elevated temperature
Hyungmin Park, Sinho Choi, Sung-Jun Lee, Gaeun Hwang, Nam‐Soon Choi, Soo‐Jin Park
SJR Q1Journal of Materials Chemistry A

We demonstrate a facile method for synthesizing silicon particles with a double coating layer consisting of aluminum trifluoride and amorphous carbon to use as an anode material for high-performance lithium-ion batteries at elevated temperatures.

Electrical and Electronic EngineeringEngineering
14
Article|45 citations·2012
Kinematic control of aerodynamic forces on an inclined flapping wing with asymmetric strokes
Hyungmin Park, Haecheon Choi
SJR Q1Bioinspiration & Biomimetics

In the present study, we conduct an experiment using a one-paired dynamically scaled model of an insect wing, to investigate how asymmetric strokes with different wing kinematic parameters are used to control the aerodynamics of a dragonfly-like inclined flapping wing in still fluid. The kinematic parameters considered are the angles of attack during the mid-downstroke (α(md)) and mid-upstroke (α(mu)), and the duration (Δτ) and time of initiation (τ(p)) of the pitching rotation. The present drag

Aerospace EngineeringEngineering
15
Article|43 citations·2020
An experimental study on the heat transfer by a single bubble wake rising near a vertical heated wall
Hwiyoung Maeng, Hyungmin Park
SJR Q1International Journal of Heat and Mass Transfer
Biomedical EngineeringEngineering

Research Areas

Biomedical EngineeringComputational MechanicsAerospace EngineeringElectrical and Electronic EngineeringAstronomy and AstrophysicsSurfaces, Coatings and Films

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