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Hyoung Kyu Cho

Seoul National University · 工学

研究室紹介

Professor Hyoung Kyu Cho's research lab specializes in thermal-hydraulic safety analysis and advanced simulation methodologies for nuclear reactor systems, with a focus on two-phase flows, film condensation, and accident progression under transient conditions. The lab develops and applies high-fidelity computational codes such as CUPID and MARS to model complex phenomena like direct emergency core coolant bypass, wall condensation with noncondensable gases, and the effects of ship motion on marine reactors. Their work emphasizes innovative sensor technologies—such as flexible three-electrode conductance probes—for accurate in-situ measurements under extreme conditions, and contributes to the safety and design optimization of advanced light water reactors and passive safety systems. The lab bridges experimental validation with multi-physics simulation to enhance reactor safety and performance under accident scenarios.

thermal-hydraulic safetytwo-phase flowCUPID codepassive safety systemsnuclear reactor accident analysis

Research Overview

Papers
159
Total Citations
1,345
Papers (5y)
58
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
58total
2022
2023
2024
2025
2026
Citations per year (5y)
198total
20222023202420252026

Selected Papers

15
1
Article|55 citations·2017
Experimental analysis on mixed convection in reactor cavity cooling system of HTGR for hydrogen production
Dong-Ho Shin, Chan Soo Kim, Goon-Cherl Park, Hyoung Kyu Cho
SJR Q1International Journal of Hydrogen Energy
Computational MechanicsEngineering
2
Article|30 citations·2016
Feasibility Test of a Liquid Film Thickness Sensor on a Flexible Printed Circuit Board Using a Three-Electrode Conductance Method
Kyu Eun Lee, Jong Heon Kim, Goon Park, Hyoung Kyu Cho
SJR Q1SensorsOA

Liquid film thickness measurements under temperature-varying conditions in a two-phase flow are of great importance to refining our understanding of two-phase flows. In order to overcome the limitations of the conventional electrical means of measuring the thickness of a liquid film, this study proposes a three-electrode conductance method, with the device fabricated on a flexible printed circuit board (FPCB). The three-electrode conductance method offers the advantage of applicability under con

Biomedical EngineeringEngineering
3
Article|29 citations·2011
Experimental observation of the droplet size change across a wet grid spacer in a 6 × 6 rod bundle
Hyoung Kyu Cho, Ki Yong Choi, Seok Cho, Chul-Hwa Song
SJR Q1Nuclear Engineering and Design
Materials ChemistryMaterials Science
4
Article|24 citations·2022
Critical heat flux characteristics of flow boiling on a heater rod under inclined and rolling conditions
Geon-Woo Kim, Jin-Seong Yoo, Chang Won Lee, Heepyo Hong, Goon-Cherl Park, Hyoung Kyu Cho
SJR Q1International Journal of Heat and Mass Transfer
Mechanical EngineeringEngineering
5
Article|20 citations·2017
Application of CUPID for subchannel-scale thermal–hydraulic analysis of pressurized water reactor core under single-phase conditions
Su-Jong Yoon, Seul Been Kim, Goon Cherl Park, Han Young Yoon, Hyoung Kyu Cho
SJR Q2Nuclear Engineering and TechnologyOA

There have been recent efforts to establish methods for high-fidelity and multi-physics simulation with coupled thermal–hydraulic (T/H) and neutronics codes for the entire core of a light water reactor under accident conditions. Considering the computing power necessary for a pin-by-pin analysis of the entire core, subchannel-scale T/H analysis is considered appropriate to achieve acceptable accuracy in an optimal computational time. In the present study, the applicability of in-house code CUPID

Aerospace EngineeringEngineering
6
Article|19 citations·2005
Experimental validation of the modified linear scaling methodology for scaling ECC bypass phenomena in DVI downcomer
Hyoung Kyu Cho, Byongjo Yun, Chul-Hwa Song, G.C. Park
SJR Q1Nuclear Engineering and DesignOA

In the direct vessel injection (DVI) system downcomer , the direct emergency core coolant (ECC) bypass is activated during the reflood phase of a large-break loss-of-coolant accident (LBLOCA) by the interaction between the downward-flowing liquid-film and the transverse gas flow . Direct ECC bypass is reportedly the major bypass mechanism of ECC, and various experiments have been performed to obtain detailed information about the ECC bypass in a DVI downcomer. These lead to a proposed new scalin

Aerospace EngineeringEngineering
7
Article|19 citations·2015
Improvement of CUPID code for simulating filmwise steam condensation in the presence of noncondensable gases
Jehee Lee, Goon-Cherl Park, Hyoung Kyu Cho
SJR Q2Nuclear Engineering and TechnologyOA

In a nuclear reactor containment, wall condensation forms with noncondensable gases and their accumulation near the condensate film leads to a significant reduction in heat transfer. In the framework of nuclear reactor safety, the film condensation in the presence of noncondensable gases is of high relevance with regards to safety concerns as it is closely associated with peak pressure predictions for containment integrity and the performance of components installed for containment cooling in ac

Aerospace EngineeringEngineering
8
Article|18 citations·2019
Development of a heat transfer coefficient correlation for buoyancy-aided turbulent mixed convection of air inside a vertical channel
Dong-Ho Shin, Sin-Yeob Kim, Chan Soo Kim, Goon-Cherl Park, Hyoung Kyu Cho
SJR Q1Applied Thermal Engineering
Computational MechanicsEngineering
9
Article|18 citations·2015
Prediction of nucleate boiling heat transfer on horizontal U-shaped heat exchanger submerged in a pool of water using MARS code
Seong-Su Jeon, Soon-Joon Hong, Hyoung Kyu Cho, Goon-Cherl Park
SJR Q1Nuclear Engineering and Design
Mechanical EngineeringEngineering
10
Article|18 citations·2023
Experimental study on flow boiling CHF in annulus channel under heaving conditions using simulant fluid R134a targeting nuclear reactor applications
Jin-Seong Yoo, Chang Won Lee, Heepyo Hong, Hyukjae Ko, Ja Hyun Ku, Geon-Woo Kim, Goon-Cherl Park, Hyoung Kyu Cho
SJR Q1Applied Thermal Engineering
Mechanical EngineeringEngineering
11
Article|16 citations·2023
Experimental investigation of helical fin and inclination effect on critical heat flux
Chang Won Lee, Jin-Seong Yoo, Heepyo Hong, Hyukjae Ko, Ja Hyun Ku, Geon-Woo Kim, Goon-Cherl Park, Hyoung Kyu Cho
SJR Q1International Journal of Heat and Mass Transfer
Computational MechanicsEngineering
12
Article|16 citations·2019
Verification and improvement of dynamic motion model in MARS for marine reactor thermal-hydraulic analysis under ocean condition
Hee-Kwan Beom, Geon-Woo Kim, Goon-Cherl Park, Hyoung Kyu Cho
SJR Q2Nuclear Engineering and TechnologyOA

Unlike land-based nuclear power plants, a marine or floating reactor is affected by external forces due to ocean conditions. These external forces can cause additional accelerations and affect each system and equipment of the marine reactor. Therefore, in designing a marine reactor and evaluating its performance and stability, a thermal hydraulic safety analysis code is necessary to consider the thermal hydrodynamic effects of ship motion. MARS, which is a reactor system analysis code, includes

Aerospace EngineeringEngineering
13
Article|15 citations·2013
Simulation of single- and two-phase natural circulation in the passive condensate cooling tank using the CUPID code
Hyoung Kyu Cho, Seungjun Lee, Han Young Yoon, Kyoung-Ho Kang, Jae Jun Jeong
SJR Q2Journal of Nuclear Science and Technology

For the analysis of transient two-phase flows in nuclear reactor components, a three-dimensional thermal-hydraulic code, named CUPID, has been developed. In the present study, the CUPID code was applied for the simulation of the PASCAL test facility constructed with an aim of validating the cooling and operational performance of the passive auxiliary feedwater system (PAFS). The PAFS is one of the advanced safety features adopted in the Advanced Power Reactor + (APR+), which is intended to compl

Aerospace EngineeringEngineering
14
Article|14 citations·2014
Heat structure coupling of CUPID and MARS for the multi-scale simulation of the passive auxiliary feedwater system
Hyoung Kyu Cho, Yun Je Cho, Han Young Yoon
SJR Q1Nuclear Engineering and Design
Aerospace EngineeringEngineering
15
Article|14 citations·2017
Measurement of sliding bubble behavior on a horizontal heated tube using a stereoscopic image processing technique
Yuna Kim, Jae Soon Kim, Goon Cherl Park, Hyoung Kyu Cho
SJR Q1International Journal of Multiphase Flow
Mechanical EngineeringEngineering

Research Areas

Aerospace EngineeringMechanical EngineeringComputational MechanicsMaterials ChemistryBiomedical EngineeringControl and Systems Engineering

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