# Fingerprint Dive into the research topics where Jae Sung Park is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

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### Engineering & Materials Science

Drag

Channel flow

Electrophoresis

Turbulence

Direct numerical simulation

Wall flow

Volume fraction

Turbulent flow

Hydrodynamics

Drag reduction

Domestic appliances

Reynolds number

Skin friction

Shear stress

Water supply

Navier Stokes equations

Heat exchangers

Energy efficiency

Energy conservation

Computer simulation

Electric fields

Heating

Water

Temperature

Stress measurement

Microstructure

Natural gas

Distribution functions

Potential energy

Electrolytes

Fluids

Friction

Water heaters

Flow of fluids

Analytical models

Thermal conductivity

Van der Waals forces

Computational fluid dynamics

Brownian movement

Surface charge

Colloids

Experiments

Fans

Flow structure

Pipe flow

Electric power utilization

Polymers

Deposits

Hot Temperature

Statistics

### Mathematics

Turbulence

Coherent States

Drag

Channel Flow

Intermittency

Colloidal Suspensions

Bursting

Pattern Formation

Resolvent

Reynolds number

Electric Field

Navier-Stokes Equations

Wall Shear Stress

Invariant Solutions

Coherent Structures

Turbulent Flow

Branch

Velocity Profile

Turbulent Channel Flow

Burst

Velocity Field

Drag Reduction

Pipe Flow

Friction

Newtonian Fluid

Coarsening

Nonlinear Waves

Electrolyte

Traveling Wave Solutions

Interaction

Volume Fraction

Hexagon

Forcing

Spacing

State Space

Electrode

Experiment

Polymers

Patch

Model

Liquid

Wavelength

Statistics

Distinct

Decompose

Fluid

Predict

Numerical Simulation

Spatial Analysis

Poiseuille Flow

### Chemical Compounds

Channel flow

Turbulence

Drag

Wall flow

Suspensions

Electrophoresis

Direct numerical simulation

Reynolds number

Navier Stokes equations

Contamination

Agglomeration

Shear stress

Drag reduction

Volume fraction

Stress measurement

Turbulent flow

Hydrodynamics

Friction

Flow of fluids

Van der Waals forces

Polymers

Brownian movement

Colloids

Microstructure

Experiments

Electrolytes

Flow structure

Fluids

Pipe flow

Deposits

Crystalline materials

Amplification

Defects

Electrodes

Electric fields

Computer simulation

Coatings

Shear flow