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Boo-Hyun Nam

Kyung Hee University · Engineering

About the Lab

Professor Boo-Hyun Nam's research lab specializes in advanced construction materials and sustainable infrastructure, with a strong focus on nano-engineered cement composites, waste-derived materials for construction, and innovative geotechnical and geospatial analysis. The lab investigates the use of nanomaterials—such as graphene oxide and carbon nanotubes—to enhance the mechanical and durability properties of concrete and cement-based materials. It also explores data-driven modeling for soil compressibility and remote sensing techniques for detecting subsurface hazards like sinkholes, integrating materials science with civil infrastructure resilience. The lab's work bridges fundamental materials science with practical applications in sustainable construction and environmental monitoring.

nano-engineered cementwaste-derived materialsgeospatial hazard detectiondata-driven modelingsustainable construction

Research Overview

Papers
163
Total Citations
2,099
Papers (5y)
38
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
38total
2022
2023
2024
2025
2026
Citations per year (5y)
192total
20222023202420252026

Selected Papers

15
1
Review|147 citations·2020
Municipal Solid Waste Incineration (MSWI) Ashes as Construction Materials—A Review
Byoung Hooi Cho, Boo Hyun Nam, Jinwoo An, Heejung Youn
SJR Q2MaterialsOA

Over the past decades, extensive studies on municipal solid waste incineration (MSWI) ashes have been performed to develop more effective recycling and waste management programs. Despite the large amount of research activities and the resulting improvements to MSWI ashes, the recycling programs for MSWI ashes are limited. For instance, although the U.S. generates more MSWI ashes than any other country in the world, its reuse/recycle programs are limited; bottom ash and fly ash are combined and d

Building and ConstructionEngineering
2
Review|109 citations·2020
Molecular Dynamics Simulation of Calcium-Silicate-Hydrate for Nano-Engineered Cement Composites—A Review
Byoung Hooi Cho, Wonseok Chung, Boo Hyun Nam
SJR Q1NanomaterialsOA

With the continuous research efforts, sophisticated predictive molecular dynamics (MD) models for C-S-H have been developed, and the application of MD simulation has been expanded from fundamental understanding of C-S-H to nano-engineered cement composites. This paper comprehensively reviewed the current state of MD simulation on calcium-silicate-hydrate (C-S-H) and its diverse applications to nano-engineered cement composites, including carbon-based nanomaterials (i.e., carbon nanotube, graphen

Civil and Structural EngineeringEngineering
3
Article|75 citations·2019
Edge-oxidized graphene oxide (EOGO) in cement composites: Cement hydration and microstructure
Jinwoo An, Boo Hyun Nam, Yousef Alharbi, Byoung Hooi Cho, Mohammad Khawaji
SJR Q1Composites Part B Engineering
Civil and Structural EngineeringEngineering
4
Article|52 citations·2017
Effect of Aggregate Mineralogy and Concrete Microstructure on Thermal Expansion and Strength Properties of Concrete
Jinwoo An, Seunghee Kim, Boo Hyun Nam, Stephan A. Durham
SJR Q2Applied SciencesOA

Aggregate type and mineralogy are critical factors that influence the engineering properties of concrete. Temperature variations result in internal volume changes could potentially cause a network of micro-cracks leading to a reduction in the concrete’s compressive strength. The study specifically studied the effect of the type and mineralogy of fine and coarse aggregates in the normal strength concrete properties. As performance measures, the coefficient of thermal expansion (CTE) and compressi

Civil and Structural EngineeringEngineering
5
Article|48 citations·2019
Sinkhole Detection and Characterization Using LiDAR-Derived DEM with Logistic Regression
Yong Je Kim, Boo Hyun Nam, Heejung Youn
SJR Q1Remote SensingOA

Depressions due to sinkhole formation cause significant structural damages to buildings and civil infrastructure. Traditionally, visual inspection has been used to detect sinkholes, which is a subjective way and time- and labor-consuming. Remote sensing techniques have been introduced for morphometric studies of karst landscapes. This study presents a methodology for the probabilistic detection of sinkholes using LiDAR-derived digital elevation model (DEM) data. The proposed study provides benef

Earth-Surface ProcessesEarth and Planetary Sciences
6
Article|45 citations·2017
Soil-Compressibility Prediction Models Using Machine Learning
Scott Kirts, Orestis P. Panagopoulos, Petros Xanthopoulos, Boo Hyun Nam
SJR Q1Journal of Computing in Civil EngineeringOA

The magnitude of the overall settlement depends on several variables such as the compression index, Cc, and recompression index, Cr, which are determined by a consolidation test; however, the test is time consuming and labor intensive. Correlations have been developed to approximate these compressibility indexes. In this study, a data driven approach has been employed to estimate Cc and Cr. Support vector machines classification is used to determine the number of distinct models to be developed.

Civil and Structural EngineeringEngineering
7
Article|44 citations·2020
Identification and quantitative analysis of sinkhole contributing factors in Florida's Karst
Boo Hyun Nam, Yong Je Kim, Heejung Youn
SJR Q1Engineering Geology
Earth-Surface ProcessesEarth and Planetary Sciences
8
Article|38 citations·2018
Feasibility of Using Graphene Oxide Nanoflake (GONF) as Additive of Cement Composite
Jinwoo An, Matthew McInnis, Wonseok Chung, Boo Hyun Nam
SJR Q2Applied SciencesOA

The object of this study is to investigate the feasibility of ball-milled graphene oxide nanoflakes (GONFs) produced by a mechanochemical process as an additive in Ordinary Portland Cement (OPC)-based paste and concrete. Different percentages of GONFs (0.01–1 wt. %) were added in OPC paste mix to find the optimum content of GONF in GONF-combined cement composites. To investigate the effect of the changes in the mix design on OPC paste, two mix design methods were employed: (1) Dry-mix, where GON

Civil and Structural EngineeringEngineering
9
Article|38 citations·2021
Flexural fatigue behaviors and damage evolution analysis of edge-oxidized graphene oxide (EOGO) reinforced concrete composites
Byoung Hooi Cho, Boo Hyun Nam, Mohammad Khawaji
SJR Q1Cement and Concrete Composites
Civil and Structural EngineeringEngineering
10
Article|35 citations·2019
Waterproofing performance of waterstop with adhesive bonding used at joints of underground concrete structures
Byoung Hooi Cho, Boo Hyun Nam, Sang-Yeon Seo, Jungil Kim, Jinwoo An, Heung-Soon Youn
SJR Q1Construction and Building Materials
Civil and Structural EngineeringEngineering
11
Article|34 citations·2015
Investigation on the side effects of municipal solid waste incineration ashes when used as mineral addition in cement-based material
Jinyoung Kim, Jinwoo An, Boo Hyun Nam, Kazi Mahmuda Tasneem
SJR Q1Road Materials and Pavement DesignOA

The main focus of this study is the characterisation of the municipal solid waste incineration (MSWI) ashes and their influence on engineering properties of cement paste when part of Portland cement is replaced with ground MSWI ashes. Petrographic examinations were performed in order to identify chemical composition of ashes and to determine their contents. To evaluate the main side effect of ashes when used in cement, the creation of network of bubbles due to the presence of aluminium, ashes, a

Building and ConstructionEngineering
12
Article|26 citations·2014
Effect of daily temperature variations on the continuous deflection profiles of airfield jointed concrete pavements
Boo Hyun Nam, Jung Heum Yeon, Zachary Behring
SJR Q1Construction and Building MaterialsOA
Civil and Structural EngineeringEngineering
13
Article|26 citations·2015
Sustainable Utilization of MSWI Bottom Ash as Road Construction Materials, Part I: Physical and Mechanical Evaluation
Jinwoo An, Behnam Golestani, Boo Hyun Nam, Jeffrey L. Lee
OA

Current management practice, existing regulations, and environmental consequences of municipal solid waste incineration (MSWI) ash utilization were comprehensively reviewed. Efforts were made to physically and mechanically characterize MSWI bottom and fly ashes and also to evaluate their influence on the structural properties of Portland cement concrete (PCC) and hot-mix asphalt (HMA) when part of fine aggregate is replaced with the MSWI bottom ash. Fundamental properties of MSWI bottom ash and

Building and ConstructionEngineering
14
Article|25 citations·2018
Mechanical and Sorptivity Characteristics of Edge-Oxidized Graphene Oxide (EOGO)-Cement Composites: Dry- and Wet-Mix Design Methods
Yousef Alharbi, Jinwoo An, Byoung Hooi Cho, Mohammad Khawaji, Wonseok Chung, Boo Hyun Nam
SJR Q1NanomaterialsOA

This paper aims to investigate the effects of edge-oxidized graphene oxide nanoflakes (EOGO) on the mechanical properties and sorptivity of cement composites. The EOGO used in this study was produced by a mechanochemical process that assists the production of EOGO in large quantities at significantly reduced costs, enabling its practical use for infrastructure construction. The scope of this work includes the use of EOGO as an additive in cement composites, including cement paste and mortar. Thi

Civil and Structural EngineeringEngineering
15
Article|23 citations·2015
Improvements to the structural condition index (SCI) for pavement structural evaluation at network level
Boo Hyun Nam, Jinwoo An, Mooyeon Kim, M.R. Murphy, Zhanmin Zhang
SJR Q1International Journal of Pavement EngineeringOA

Structural evaluation provides valuable information about the expected behaviour and response of pavements and can be used at the network level of pavement management to prioritise projects. The falling weight deflectometer (FWD) can be used to identify the beginning and end of management sections and group pavement sections with similar structural capacities. The structural condition index (SCI) was developed as a screening tool for the pavement network-level evaluation, and the FWD data are us

Civil and Structural EngineeringEngineering

Research Areas

Civil and Structural EngineeringBuilding and ConstructionManagement, Monitoring, Policy and LawEarth-Surface ProcessesOcean EngineeringSafety, Risk, Reliability and Quality

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