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Woo Seung Min

Kyung Hee University · 工学

研究室紹介

Professor Woo Seung Min's research lab specializes in advanced nuclear energy technologies, with a primary focus on pyroprocessing for closed nuclear fuel cycles. The lab investigates innovative safeguards methodologies to ensure non-proliferation and security in advanced reprocessing facilities, particularly through isotopic ratio analysis such as Pu-to-244Cm. It also explores the fundamental reaction mechanisms in nuclear materials, including gas–solid reactions and solid-state transformation dynamics, using novel models like the crack–spallation model. Additionally, the lab addresses societal dimensions of nuclear energy by studying public policy literacy and communication strategies in nuclear and renewable energy policies.

pyroprocessingnuclear safeguardsisotopic ratio analysisgas–solid reactionspolicy literacy

Research Overview

Papers
61
Total Citations
322
Papers (5y)
21
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
21total
2022
2023
2024
2025
2026
Citations per year (5y)
108total
20222023202420252026

Selected Papers

15
1
Article|52 citations·2022
Synthesis and characterization of Polyethylene/B4C composite, and its neutron shielding performance in cementitious materials: Experimental and simulation studies
Jaeyeon Park, Sungwun Her, Seongmin Cho, Seung Min Woo, Sungchul Bae
SJR Q1Cement and Concrete Composites
Materials ChemistryMaterials Science
2
Article|43 citations·2019
Assessment of neutron shielding performance of nano-TiO2-incorporated cement paste by Monte Carlo simulation
Jaeyeon Park, Heongwon Suh, Seung Min Woo, Keunhong Jeong, Seungwook Seok, Sungchul Bae
SJR Q1Progress in Nuclear Energy
Materials ChemistryMaterials Science
3
Article|28 citations·2020
Nuclear fuel reprocessing: Can pyro-processing reduce nuclear proliferation risk?
Seung Min Woo, Sunil S. Chirayath, Matthew Fuhrmann
SJR Q1Energy Policy
Global and Planetary ChangeEnvironmental Science
4
Article|15 citations·2017
Development of seeder for mixed planting of corn and soybeans
Seung Min Woo, Daniel Dooyum Uyeh, Moon Sang Sagong, Yu Ha
SJR Q2International journal of agricultural and biological engineeringOA

Abstract: Corn and soybeans should be sown between 5 cm and 10 cm apart in mixed cultivation to increase protein content and improve productivity of the forage. However, existing sowers cannot plant at intervals of less than 20 cm. Consequently, mixed cultivation of corn and soybeans is currently performed by first sowing corn seeds with a tractor and then manually planting soybean seeds. This method results in irregular intervals between the seeds, it is laborious and time consuming. This study

Soil ScienceAgricultural and Biological Sciences
5
Article|14 citations·2024
Technical Overview of Pyro-processing and Policy Considerations
Kwangchae Im, Manseok Lee, Seung Min Woo
SJR Q2Korean Journal of Chemical EngineeringOA

Abstract Pyro-processing is an emerging technology crucial to the implementation of a closed nuclear fuel cycle. It is distinguished by its method of extracting and recycling actinides from fission products in spent nuclear fuels, utilizing high-temperature molten salt media. Despite its promise, the technology poses proliferation concerns that underscores the imperative for robust safeguards. While the safeguarding framework for aqueous reprocessing facilities that has been established over dec

Safety, Risk, Reliability and QualityEngineering
6
Article|11 citations·2021
Study on the policy literacy of the Republic of Korea regarding nuclear and new-renewable energy
Eunok Im, Ju Kyong Kim, Seung Min Woo
SJR Q2Nuclear Engineering and TechnologyOA

Policy literacy plays a critical role in enhancing deliberative communication among the public, policymakers, and experts. It also helps develop a positive view of policy by the public, which facilitates public acceptance. Despite its importance, however, policy literacy has received little attention in energy policy practice. Therefore, this study explores factors affecting the public's understanding and knowledge (i.e., policy literacy) of nuclear and new-renewable energy policies. Accordingly

Public Health, Environmental and Occupational HealthMedicine
7
Article|9 citations·2018
Investigations on Detecting Potential Nuclear Material Diversion from a Pyroprocessing Facility
Seung Min Woo, Heukjin Boo, Sunil S. Chirayath, Keunhong Jeong
SJR Q2Nuclear Technology

Under normal operating conditions, a pyroprocessing facility removes highly radioactive and nonradioactive fission product waste from used nuclear reactor fuel to recycle the remaining uranium (U), plutonium (Pu), and other actinides contained in it. The products from this facility are separate ingots of U and mixed transuranic elements (TRUs)–uranium (TRU-U). Uranium in both ingots will be depleted U with 235U enrichment less than 1%. The TRU-U ingot will contain neptunium, Pu, americium (Am),

Fluid Flow and Transfer ProcessesChemical Engineering
8
Article|9 citations·2018
Nuclide composition non-uniformity in used nuclear fuel for considerations in pyroprocessing safeguards
Seung Min Woo, Sunil S. Chirayath, Massimiliano Fratoni
SJR Q2Nuclear Engineering and TechnologyOA

An analysis of a pyroprocessing safeguards methodology employing the Pu-to-244Cm ratio is presented. The analysis includes characterization of representative used nuclear fuel assemblies with respect to computed nuclide composition. The nuclide composition data computationally generated is appropriately reformatted to correspond with the material conditions after each step in the head-end stage of pyroprocessing. Uncertainty in the Pu-to-244Cm ratio is evaluated using the Geary-Hinkley transform

Fluid Flow and Transfer ProcessesChemical Engineering
9
Article|8 citations·2025
Reactive metal–support interaction of In2O3/crystalline carbon hybrid support for highly durable and efficient oxygen reduction reaction electrocatalyst
Seung Min Woo, Han Seul Kim, Pil Ju Youn, Kyung Rog Lee, Gyu Mi Kang, Sang‐Hoon You, Kug‐Seung Lee, Yong‐Tae Kim, Seung‐Ho Yu, Jeong Hwan Han, Sung Jong Yoo, Il‐Kyu Park
SJR Q1Chemical Engineering Journal
Renewable Energy, Sustainability and the EnvironmentEnergy
10
Article|7 citations·2017
A new gas–solid reaction model for voloxidation process with spallation
Je Ir Ryu, Seung Min Woo
SJR Q2Nuclear Engineering and TechnologyOA

A new methodology, the crack–spallation model, has been developed to analyze gas–solid reactions dominated by crack growth inside of the solid reactant and spallation phenomena. The new model physically represents three processes of the reaction progress: (1) diffusion of gas reactant through pores; (2) growth of product particle in pores; and (3) crack and spallation of solid reactant. The validation of this method has been conducted by comparison of results obtained in an experiment for oxidat

Materials ChemistryMaterials Science
11
Article|6 citations·2019
Influence of the spatial Pu variation for evaluating the Pu content in spent nuclear fuel using Support Vector Regression
Seung Min Woo, Hyeonmin Kim, Sunil S. Chirayath
SJR Q1Annals of Nuclear Energy
Aerospace EngineeringEngineering
12
Article|4 citations·2018
A fermentation and storage TMR model for dairy cattle
Seung Min Woo, Daniel Dooyum Uyeh, Junhee Kim, Yu Ha
SJR Q3Engineering in Agriculture Environment and FoodOA

Total Mixed Ration (TMR), a system used in combining materials into feed for animals in the right proportion is a complex process especially when by-products are utilized. This involves several steps and unit machines. The current study focused on modeling a fermentation and storage system utilizing by-products for TMR feed production using the Arena V15 simulation program. Process time, operation rate, and bottleneck phenomenon were analyzed. The optimal capacities of unit machines were estimat

Animal Science and ZoologyAgricultural and Biological Sciences
13
Article|4 citations·2023
Investigations on the Pu-to-244Cm ratio method for Pu accountancy in pyroprocessing
Sunil S. Chirayath, Heukjin Boo, Seung Min Woo
SJR Q2Nuclear Engineering and TechnologyOA

Non-uniformity of Pu and Cm composition in used nuclear fuel was analyzed to determine its effect on Pu accountancy in pyroprocessing, while employing the Pu-to-244Cm ratio method. Burnup simulation of a typical pressurized water reactor fuel assembly, required for the analysis, was carried out using MCNP code. Used fuel nuclide composition, as a function of nine axial and two radial meshes, were evaluated. The axial variation of neutron flux and self-shielding effects were found to affect the u

Fluid Flow and Transfer ProcessesChemical Engineering
14
Article|3 citations·2024
Estimating North Korea's nuclear capabilities: Insights from a study on tritium production in a 5MWe graphite-moderated reactor
Sungmin Yang, Manseok Lee, Danwoo Ko, Gyunyoung Heo, C. H. Kang, Seung Min Woo
SJR Q2Nuclear Engineering and TechnologyOA

This study explores the potential for tritium production in North Korea's 5MWe graphite-moderated reactor, a facility primarily associated with nuclear weapons material production. While existing research on these reactors has largely centered on plutonium, our focus shifts to tritium, a crucial element in boosted fission bombs. Utilizing the MCNP6 code for simulations, the results estimate that North Korea can possibly produce approximately 7–12 g of tritium annually. This translates to the pot

Global and Planetary ChangeEnvironmental Science
15
Article|3 citations·2018
Evaluation of nuclear material accountability by the probability of detection for loss of Pu (LOPu) scenarios in pyroprocessing
Seung Min Woo, Sunil S. Chirayath
SJR Q2Nuclear Engineering and TechnologyOA

A new methodology to analyze the nuclear material accountability for pyroprocessing system is developed. The Pu-to-244Cm ratio quantification is one of the methods for Pu accountancy in pyroprocessing. However, an uncertainty in the Pu-to-244Cm ratio due to the non-uniform composition in used fuel assemblies can affect the accountancy of Pu. A random variable, LOPu, is developed to analyze the probability of detection for Pu diversion of hypothetical scenarios at a pyroprocessing facility consid

Fluid Flow and Transfer ProcessesChemical Engineering

Research Areas

Civil and Structural EngineeringMaterials ChemistryFluid Flow and Transfer ProcessesRenewable Energy, Sustainability and the EnvironmentSafety, Risk, Reliability and QualityAerospace Engineering

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