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Email
jihyungyoo
obfuscate@hanyang.ac.kr
Professor of Automotive Engineering
Education:
- B.S. Mechanical Engineering, Hanyang University, 2005
- M.S. Mechanical Engineering, Hanyang University, 2007
- Ph.D. Mechanical Engineering, Stanford University, 2011
Work experience:
- Professor, Department of Automotive Engineering, Hanyang University, 2017 - current
- Assistant Professor, Department of Mechanical and Aerospace Engineering, University at Buffalo, SUNY, 2013 - 2017
- Postdoctoral Research Associate, Fuels Engines & Emissions Research Center, Oak Ridge National Labooratory, 2011 - 2013
Publications
- Numerical and experimental analysis of a dual-channel electric motor housing cooling system
- In-situ tailpipe soot emission monitoring for diesel engine exhaust using a quartz-enhanced photoacoustic spectroscopy sensor
- State of health estimation of lithium-ion battery cell based on optical thermometry with physics-informed machine learning
- Direct motor rotor pyrometry using mid-infrared hollow waveguide
- Thermal conductivity estimation using Physics-Informed Neural Networks with limited data
- Nitric Oxide and Temperature Measurement Using Laser Absorption Spectroscopy in Arc-Heater Plenum
- Combined analysis of thermofluids and electromagnetism using physics-informed neural networks
- CuO-SnO2 nanocomposites - Efficient and cost-effective electrocatalysts for urea oxidation
- A remote FBG-OFDR thermometry sensor for EV energy systems
- Carbon dioxide concentration estimation in nonuniform temperature fields based on single-pass tunable diode laser absorption spectroscopy
- Integration of binary Ta2O5 nanoparticles on ternary MnWO4 nanorods as novel electrocatalysts with enhanced activity toward methanol oxidation reaction
- CuWO4 as a cost-effective electrocatalyst for urea oxidation reaction
- Core @ shell nanorods for enhancing supercapacitor performance - ZnWO4 nanorods decorated with colloidal SnO2 quantum dots
- ZIF-8 @ CoFe2O4 as a highly efficient bifunctional electrocatalyst for the methanol oxidation and oxygen evolution reactions
- Core @ shell nanorods for enhancing supercapacitor performance - ZnWO4 nanorods decorated with colloidal SnO2 quantum dots
- Quantification of Elevated Hydrogen Cyanide (HCN) Concentration Typical in a Residential Fire Environment Using Mid-IR Tunable Diode Laser
- A numerical study of enhanced lithium-ion battery cooling using a module insert
- Development of a distributed optical thermometry technique for battery cells
- Modal Decomposition Analysis of Combustion Instability Due to External Perturbation in a Mesoscale Burner Array
- Torque Ripple Reduction of BLDC Traction Motor of Electric Wheelchair for Ride Comfort Improvement
- High-speed supercontinuum laser absorption spectroscopy of light hydrocarbons in elevated pressures and temperatures
- TDLAS measurements of temperature and water vapor concentration in a flameless MILD combustor
- Combined Use of Tunable Diode Laser Absorption Spectroscopy and Laser-Induced Breakdown Spectroscopy for Temperature Field Reconstruction
- Development and characterization of swirl-stabilized diffusion mesoscale burner array
- Combined use of TDLAS and LIBS for reconstruction of temperature and concentration fields
- Simultaneous Measurements of Light Hydrocarbons Using Supercontinuum Laser Absorption Spectroscopy
- Effect of flame interaction on swirl-stabilized mesoscale burner array performance
- Mesoscale burner array performance analysis
- Comprehensive combustion stability analysis using dynamic mode decomposition
- Development and characterization of additive-manufactured mesoscale combustor array
- Proper orthogonal decomposition for analysis of plasma-assisted premixed swirl-stabilized flame dynamics
- Minute concentration measurements of simple hydrocarbon species using supercontinuum laser absorption spectroscopy
- High-speed multiplexed spatiotemporally resolved measurements of exhaust gas recirculation dynamics in a multi-cylinder engine using laser absorption spectroscopy
- Fast Spatially-Resolved EGR Distrubution Measurements in an Internal Combustion Engine using Absorption Spectroscopy
- JP-5 and HRJ-5 autoignition characteristics and surrogate modeling
- Near-wall imaging using toluene-based planar laser-induced fluorescence in shock tube flow
- Planar laser-induced fluorescence imaging in shock tube flows
- Fluorescence quantum yield of carbon dioxide for quantitative UV laser-induced fluorescence in high-pressure flames
- Detection of trace nitric oxide concentrations using 1-D laser-induced fluorescence imaging