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Myung-Joon Lim

Seoul National University · Environmental Science

About the Lab

Professor Myung-Joon Lim's research lab specializes in watershed hydrology, water quality modeling, and environmental impact assessment, with a focus on understanding the effects of land use and land cover changes on hydrological processes and nonpoint source pollution. The lab employs advanced modeling techniques such as HSPF and SWAT to simulate runoff, sediment yield, and fecal coliform transport in urbanizing and developing watersheds. It also conducts field-based studies using rainfall simulation and remote sensing to evaluate ecosystem services like water retention and soil erosion control. The lab’s work spans diverse regions, from the southeastern United States to sub-Saharan Africa and the Korean Peninsula, emphasizing sustainable land and water management.

watershed modelingnonpoint source pollutionland use changesoil erosionwater quality simulation

Research Overview

Papers
130
Total Citations
1,204
Papers (5y)
26
Primary Field
Environmental Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
26total
2022
2023
2024
2025
2026
Citations per year (5y)
62total
20222023202420252026

Selected Papers

15
1
Article|136 citations·2008
Assessing the impacts of land use changes on watershed hydrology using MIKE SHE
Sangjun Im, Hyeon-Jun Kim, Chulgyum Kim, Cheol-Hee Jang
SJR Q1Environmental Earth Sciences
Water Science and TechnologyEnvironmental Science
2
Article|80 citations·2010
Predicting the rainfall-triggered landslides in a forested mountain region using TRIGRS model
Dongyeob Kim, Sangjun Im, Sang Ho Lee, Youngjoo Hong, Kyung-Sub Cha
SJR Q2Journal of Mountain Science
Management, Monitoring, Policy and LawEnvironmental Science
3
Article|74 citations·2003
SIMULATING HYDROLOGIC AND WATER QUALITY IMPACTS IN AN URBANIZING WATERSHED1
Sangjun Im, Kevin M. Brannan, Saied Mostaghimi
SJR Q1JAWRA Journal of the American Water Resources Association

ABSTRACT: The Hydrologic Simulation Program‐Fortran (HSPF) was calibrated and used to assess the future effects of various land development scenarios on water quality in the Polecat Creek watershed in Caroline County, Virginia. Model parameters related to hydrology and water quality were calibrated and validated using observed stream flow and water quality data collected at the watershed outlet and the outlets of two sub water sheds. Using the county's Comprehensive Plan, land use scenarios were

Water Science and TechnologyEnvironmental Science
4
Article|52 citations·2013
Modeling the contribution of trees to shallow landslide development in a steep, forested watershed
Dongyeob Kim, Sangjun Im, Chang‐Woo Lee, Choongshik Woo
SJR Q1Ecological Engineering
Management, Monitoring, Policy and LawEnvironmental Science
5
Article|42 citations·2007
Comparison of HSPF and SWAT models performance for runoff and sediment yield prediction
Sangjun Im, Kevin M. Brannan, Saied Mostaghimi, Sang Min Kim
SJR Q2Journal of Environmental Science and Health Part A

A watershed model can be used to better understand the relationship between land use activities and hydrologic/water quality processes that occur within a watershed. The physically based, distributed parameter model (SWAT) and a conceptual, lumped parameter model (HSPF), were selected and their performance were compared in simulating runoff and sediment yields from the Polecat Creek watershed in Virginia, which is 12,048 ha in size. A monitoring project was conducted in Polecat Creek watershed d

Water Science and TechnologyEnvironmental Science
6
Article|36 citations·2004
Simulating Fecal Coliform Bacteria Loading from an Urbanizing Watershed
Sangjun Im, Kevin M. Brannan, Saied Mostaghimi, Jaepil Cho
SJR Q2Journal of Environmental Science and Health Part A

The fate and transport of fecal coliform bacteria in the urbanizing Polecat Creek watershed, located in Virginia, was simulated using the Hydrological Simulation Program-FORTRAN (HSPF). Both point and nonpoint sources of fecal coliform were included in the simulation. Hydrologic and water quality parameters of HSPF were calibrated and validated using observed data collected from October 1994 to June 2000 at three monitoring stations. The percent errors in total runoff volumes between observed an

Environmental ChemistryEnvironmental Science
7
Article|32 citations·2008
Comparing groundwater recharge and base flow in the Bukmoongol small-forested watershed, Korea
Edwin A. Combalicer, Stephen Lee, Sunwoo Ahn, Dongyeob Kim, Sangjun Im
SJR Q2Journal of Earth System Science
Geochemistry and PetrologyEarth and Planetary Sciences
8
Article|30 citations·2020
Spatiotemporal Analysis of Land Cover Changes in the Chemoga Basin, Ethiopia, Using Landsat and Google Earth Images
Wubeshet Damtea, Dongyeob Kim, Sangjun Im
SJR Q1SustainabilityOA

Land cover change is a major environmental concern in the northwestern highlands of Ethiopia. This study detected land cover transitions over the past 30 years in the Chemoga basin (total area = 118,359 ha). Land cover maps were generated via the supervised classification of Landsat images with the help of the Google Earth (GE) images. A total of 218 unchanged land features sampled from GE images were used as the training datasets. Classification accuracy was evaluated by comparing classified im

Global and Planetary ChangeEnvironmental Science
9
Article|30 citations·2010
Assessing climate change impacts on water balance in the Mount Makiling forest, Philippines
Edwin A. Combalicer, Rex Victor O. Cruz, S. Lee, Sangjun Im
SJR Q2Journal of Earth System Science
Water Science and TechnologyEnvironmental Science
10
Article|27 citations·2007
Application of SCS curve number method for irrigated paddy field
Sangjun Im, Seungwoo Park, Taeil Jang
SJR Q2KSCE Journal of Civil Engineering
Water Science and TechnologyEnvironmental Science
11
Article|25 citations·2020
Characterizing the Interception Capacity of Floor Litter with Rainfall Simulation Experiments
Qiwen Li, Ye Eun Lee, Sangjun Im
SJR Q1WaterOA

Floor litter can reduce the amount of water reaching the soil layer through rainfall interception. The rainfall interception capacity of floor litter varies with the physical features of the litter and rainfall characteristics. This study aimed to define the maximum and minimum interception storages (Cmx, Cmn) of litter layers using rainfall simulation experiments, and examine the effects of litter type and rainfall characteristics on rainfall retention and drainage processes that occur in the l

Soil ScienceAgricultural and Biological Sciences
12
Article|24 citations·2017
Estimation of soil erosion rate in the Democratic People's Republic of Korea using the RUSLE model
Eunjai Lee, Sujung Ahn, Sangjun Im
SJR Q2Forest Science and TechnologyOA

Forests are well known to control soil erosion and severe flooding. In the Democratic People's Republic of Korea (North Korea), deforestation was estimated at 20% between 1997 and 2014. This decline was mainly reflective of improper land use practices on steep slopes. Intensive deforestation and inappropriate land management can lead to severe soil erosion. The objective of this study was to describe the regional soil erosion severity in North Korea using the Revised Universal Soil Loss Equation

Soil ScienceAgricultural and Biological Sciences
13
Article|21 citations·2016
Assessing the vegetation canopy influences on wind flow using wind tunnel experiments with artificial plants
Youngjoo Hong, Dongyeob Kim, Sangjun Im
SJR Q2Journal of Earth System Science
Earth-Surface ProcessesEarth and Planetary Sciences
14
Article|16 citations·2021
Post-Fire Impacts of Vegetation Burning on Soil Properties and Water Repellency in a Pine Forest, South Korea
Qiwen Li, Sujung Ahn, Taehyun Kim, Sangjun Im
SJR Q1ForestsOA

Forest fires can have a direct and immediate impact on soil properties, particularly soil water repellency. This study investigated the direct impacts of the Gangneung forest fire of 2019 on soil properties and the spatial variability of soil water repellency with vegetation burn severity in the Korean red pine (Pinus densiflora Siebold and Zucc) forest of South Korea. A total of 36 soil samples were collected at depth intervals of 0–5 cm, 10–15 cm, and 20–25 cm from three burned sites, represen

Global and Planetary ChangeEnvironmental Science
15
Article|16 citations·2019
Performance Analysis of Log Extraction by a Small Shovel Operation in Steep Forests of South Korea
Eunjai Lee, Sang-Kyun Han, Sangjun Im
SJR Q1ForestsOA

In South Korea, logs for low-value products, such as pulpwood and fuelwood, are primarily extracted from harvest sites and transported to roadside or landing areas using small shovels. Previous studies on log extraction, however, have focused on cable yarding operations with the goal of improving productivity on steep slopes and inaccessible sites, leaving small-shovel operations relatively unexamined. Therefore, the main objectives were to determine small-shovel extraction productivity and cost

Mechanics of MaterialsEngineering

Research Areas

Water Science and TechnologyManagement, Monitoring, Policy and LawGlobal and Planetary ChangeSoil ScienceMechanics of MaterialsPlant Science

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