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Seungbok Leigh

Yonsei University · 工学

研究室紹介

Professor Seungbok Leigh's research lab specializes in building energy efficiency and sustainable indoor environments, focusing on innovative retrofit strategies for existing buildings. Key research directions include optimizing window systems for thermal performance, integrating phase change materials (PCMs) for passive thermal regulation, and developing advanced thermal management systems for lighting and HVAC integration. The lab also investigates environmental impacts of construction, such as noise and vibration, through predictive modeling and cost estimation. Overall, the lab emphasizes energy conservation, thermal comfort, and the application of smart, data-driven solutions tailored to regional climates—particularly in Korean residential and office buildings.

building energy efficiencyphase change materialsthermal managementwindow retrofitHVAC integration

Research Overview

Papers
69
Total Citations
812
Papers (5y)
14
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
14total
2016
2017
2018
2019
2023
Citations per year (5y)
133total
20162017201820192023

Selected Papers

15
1
Article|138 citations·2007
Performance evaluation of a radiant floor cooling system integrated with dehumidified ventilation
Doosam Song, Taeyeon Kim, Suwon Song, Suckho Hwang, Seung-Bok Leigh
SJR Q1Applied Thermal Engineering
Building and ConstructionEngineering
2
Article|136 citations·2013
Effect of LED lighting on the cooling and heating loads in office buildings
Byung-Lip Ahn, Cheol-Yong Jang, Seung-Bok Leigh, Seung‐Hwan Yoo, Hakgeun Jeong
SJR Q1Applied Energy
Building and ConstructionEngineering
3
Article|42 citations·2015
Window retrofit strategy for energy saving in existing residences with different thermal characteristics and window sizes
Byung-Lip Ahn, Jong‐Hun Kim, Cheol-Yong Jang, Seung-Bok Leigh, Hakgeun Jeong
SJR Q2Building Services Engineering Research and Technology

An adequate window system is one of the most important retrofit strategies for effective energy conservation of a building, because the U-value and solar heat gain coefficient of windows have enormous impact on the heating and cooling loads of buildings. Therefore, this paper presents methods for improving the energy efficiency of existing residences that have various window sizes and envelope insulations, through a window retrofit using optimal U-value and solar heat gain coefficient values. Fu

Building and ConstructionEngineering
4
Article|40 citations·2015
Applications of building-integrated coil-type ground-coupled heat exchangers—Comparison of performances of vertical and horizontal installations
Jin-Uk Lee, Taeyeon Kim, Seung-Bok Leigh
SJR Q1Energy and Buildings
Renewable Energy, Sustainability and the EnvironmentEnergy
5
Article|39 citations·2018
Prediction of optimum heating timing based on artificial neural network by utilizing BEMS data
Jihoon Jang, Jumi Baek, Seung-Bok Leigh
SJR Q1Journal of Building Engineering
Building and ConstructionEngineering
6
Article|34 citations·2014
Prediction of Environmental Costs of Construction Noise and Vibration at the Preconstruction Phase
Taehoon Hong, Changyoon Ji, Joowan Park, Seung-Bok Leigh, Dong-yeon Seo
SJR Q1Journal of Management in Engineering

Construction noise and vibration in urban areas are environmental impacts that cause damage to humans. A model for predicting the environmental costs of construction noise and vibration was developed in this study. The model uses noise- and vibration-level data of construction equipment to predict the construction noise and vibration levels and estimates the environmental costs based on the predicted noise and vibration levels. Monte Carlo simulation was used to develop the model, considering th

Speech and HearingHealth Professions
7
Article|31 citations·2013
Energy consumption analysis of a residential building with phase change materials under various cooling and heating conditions
Taeyeon Kim, Sangmin Ahn, Seung-Bok Leigh
SJR Q2Indoor and Built Environment

Phase change materials (PCMs) absorb or release a large amount of heat when changing phase from solid to liquid or vice versa. When this characteristic of PCM is utilized, it can be employed effectively for energy conversation in buildings. To apply PCM to buildings, the thermal characteristics of PCM must be considered, such as the melting temperature and temperature range of the phase changes. In addition, the characteristics of the heating and cooling system, which influence the cycle of PCM

Mechanical EngineeringEngineering
8
Article|24 citations·2019
The Derivation of Cooling Set-Point Temperature in an HVAC System, Considering Mean Radiant Temperature
Jinmog Han, Jongkyun Bae, Jihoon Jang, Jumi Baek, Seung-Bok Leigh
SJR Q1SustainabilityOA

Heating, ventilation, and air-conditioning (HVAC) systems usually have a set-point temperature control feature that uses the indoor dry-bulb temperature to control the indoor environment. However, an incorrect set-point temperature can reduce thermal comfort and result in unnecessary energy consumption. This study focuses on a derivation method for the optimal cooling set-point temperature of an HVAC system used in office buildings, considering the thermal characteristics and daily changes in th

Building and ConstructionEngineering
9
Article|24 citations·2013
A model for evaluating the environmental benefits of elementary school facilities
Changyoon Ji, Taehoon Hong, Kwangbok Jeong, Seung-Bok Leigh
SJR Q1Journal of Environmental Management
Building and ConstructionEngineering
10
Article|24 citations·2015
A Study on External Shading Devices for Reducing Cooling Loads and Improving Daylighting in Office Buildings
Min-Seok Kim, Seung-Bok Leigh, Taeyeon Kim, Sooyoun Cho
SJR Q1Journal of Asian Architecture and Building EngineeringOA

AbstrctThis study is aimed at analyzing the impact of effective shading design for office buildings. For shade design, the overheated period for the area in which a target building was located was estimated, the building was configured to be shaded during this period, and a different shading design was applied for each direction. Using this shade design, the daylighting performance and the reduction in cooling loads during the overheated period were evaluated. The daylighting performance was eva

Building and ConstructionEngineering
11
Article|22 citations·2015
Savings in Cooling Energy with a Thermal Management System for LED Lighting in Office Buildings
Byung-Lip Ahn, Ji-Woo Park, Seung‐Hwan Yoo, Jonghun Kim, Seung-Bok Leigh, Cheol-Yong Jang
SJR Q1EnergiesOA

Light-emitting diode (LED) lighting should be considered for lighting efficiency enhancement, however, waste heat from light-emitting diode (LED) lighting increases the internal cooling load during the summer season. In order to solve this problem we propose a thermal management system for light-emitting diode (LED) lighting with a heat exchanger module integrated with the building’s heating, ventilation, and air conditioning (HVAC) system to move the lighting’s waste heat outdoors. An experimen

Building and ConstructionEngineering
12
Article|21 citations·2019
Development of an Improved Model to Predict Building Thermal Energy Consumption by Utilizing Feature Selection
Jihoon Jang, Joosang Lee, Eunjo Son, Kyung-Yong Park, Gahee Kim, Jee Hang Lee, Seung-Bok Leigh
SJR Q1EnergiesOA

Humans spend approximately 90% of the daytime in buildings, and greenhouse gases (GHGs) emitted by buildings account for approximately 20% of total GHG emissions. As the energy consumed during building operation from a building life-cycle perspective amounts to approximately 70–90% of the total energy, it is essential to accurately predict the energy consumption of buildings for their efficient operation. This study aims to optimize a model for predicting the thermal energy consumption of buildi

Electrical and Electronic EngineeringEngineering
13
Article|18 citations·2019
Investigating Primary Factors Affecting Electricity Consumption in Non-Residential Buildings Using a Data-Driven Approach
Sooyoun Cho, Jee Hang Lee, Jumi Baek, Gi-Seok Kim, Seung-Bok Leigh
SJR Q1EnergiesOA

Although the latest energy-efficient buildings use a large number of sensors and measuring instruments to predict consumption more accurately, it is generally not possible to identify which data are the most valuable or key for analysis among the tens of thousands of data points. This study selected the electric energy as a subset of total building energy consumption because it accounts for more than 65% of the total building energy consumption, and identified the variables that contribute to el

Building and ConstructionEngineering
14
Article|15 citations·2014
Thermal and Daylighting Performance of Energy-Efficient Windows in Highly Glazed Residential Buildings: Case Study in Korea
Chang Heon Cheong, Taeyeon Kim, Seung-Bok Leigh
SJR Q1SustainabilityOA

Cooling load in highly glazed residential building can be excessively large due to uncontrolled solar energy entering the indoor space. This study focuses on the cooling load reduction and changes in the daylighting properties via the application of a double window system (DWS) with shading with various surface reflectivities in highly glazed residential buildings. Evaluation of thermal and daylighting performances is carried out using simulation tools. The reductions in cooling load and energy

Building and ConstructionEngineering
15
Article|13 citations·2015
Synergetic Effect between Lighting Efficiency Enhancement and Building Energy Reduction Using Alternative Thermal Operating System of Indoor LED Lighting
Byung-Lip Ahn, Ji-Woo Park, Seung‐Hwan Yoo, Jonghun Kim, Hakgeun Jeong, Seung-Bok Leigh, Cheol-Yong Jang
SJR Q1EnergiesOA

We investigated the synergetic effect between light-emitting diode (LED) lighting efficiency and building energy savings in heating and cooling using an alternative thermal operating system (ATOS) of indoor LED lighting integrated with the ventilation system of a building as an active cooling device. The heat generated from LED lighting and the indoor lighting illuminance were experimentally determined. The indoor heat gains in cooling and heating periods were determined using measurement data;

TransportationSocial Sciences

Research Areas

Building and ConstructionTransportationRenewable Energy, Sustainability and the EnvironmentSpeech and HearingMechanical EngineeringElectrical and Electronic Engineering

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