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Park Seon-Gi

Ewha Womans University

About the Lab

Professor Park Seon-Gi's research lab specializes in atmospheric and climate modeling, with a focus on improving weather and climate predictions through advanced data assimilation techniques, land-atmosphere interactions, and the integration of observational data. The lab investigates tropical cyclone track forecasting, land surface processes such as soil temperature and vegetation dynamics, and the impacts of land use change on regional meteorology using high-resolution mesoscale models like WRF and MM5. A key emphasis is placed on reducing uncertainties in numerical weather prediction by optimizing observational strategies—particularly dropwindsonde deployment—and enhancing land surface representation in climate simulations.

data assimilationtropical cyclonesland-atmosphere interactionclimate modelingland use change

Research Overview

Papers
15
Total Citations
28
Papers (5y)
7
Primary Field

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
7total
2018
2020
2023
2024
2025
Citations per year (5y)
0total
20182020202320242025

Selected Papers

15
1
Article|7 citations·2008
Impact of Dropwindsonde Data on the Track Forecasts of a Tropical Cyclone: An Observing-Systems Simulation Experiment Study
박선기, Da-Lin Zhang, Hyun Hee Kim

In this study, the model initial uncertainties associated with the track forecast of Hurricane Bonnie (1998) is examined through a series of observing-systems simulation experiments (OSEs) with the Pen State University-National Center for Atmospheric Research mesoscale model (i.e., MM5). Analysis soundings with varying densities and configurations are used to mimic the inclusion of dropwindsonde data in the model initial conditions. Results show that increasing the would result in better track f

2
Article|6 citations·2017
Soil Temperature Response in Korea to a Changing Climate Using a Land Surface Model
박선기, 오성민, Claudio Cassardo

The land surface processes play an important role in weather and climate systems through its regulation of radiation, heat, water and momentum fluxes. Soil temperature (ST) is one of the most important parameters in the land surface processes; however, there are few extensive measurements of ST with a long time series in the world. According to the CLImatology of Parameters at the Surface (CLIPS) methodology, the output of a trusted Soil-Vegetation- Atmosphere Transfer (SVAT) scheme can be utili

3
Article|5 citations·2011
A Review on Vegetation Models and Applicability to Climate Simulations at Regional Scale
명복순, 최용상, 박선기

The lack of accurate representations of biospheric components and their biophysical and biogeochemical processes is a great source of uncertainty in current climate models. The interactions between terrestrial ecosystems and the climate include exchanges not only of energy, water and momentum, but also of carbon and nitrogen. Reliable simulations of these interactions are crucial for predicting the potential impacts of future climate change and anthropogenic intervention on terrestrial ecosystem

4
Article|4 citations·2010
Uncertainty Analysis Using the WRF Maximum Likelihood Ensemble Filter System and Comparison with Dropwindsonde Observations in Typhoon Sinlaku (2008)
Hyun Hee Kim, 박선기, Dusanka Zupanski, Milija Zupanski

In this study, the maximum likelihood ensemble filter (MLEF) is applied to a tropical cyclone case to identify the uncertainty areas in the context of targeting observations, using the WRF model. Typhoon Sinlaku (2008), from which dropwindsonde data are collected through THORPEX Pacific Asian Regional Campaign (TPARC),is selected for the case study. For the uncertainty analysis, a measurement called the deep layer mean (DLM) wind variance is employed. With assimilation of conventional rawinsonde

5
Article|3 citations·2011
합성토지피복자료와 고해상도 중규모 모형을 이용한 시화호 지역의 토지이용 변화에 따른 주변 기상장 변화 연구
박선기, 김지희

In this study, the influence of a change in land use on the local weather fields is investigated around the Lake Shihwa area using synthetic land cover data and a high-resolution mesoscale model - the Weather Research and Forecasting (WRF). The default land cover data generally used in the WRF is based on the land use category of the United States Geological Survey (USGS), which erroneously presents most land areas of the Korean Peninsula as savannas. To revise such a fault, a multi-temporal lan

6
Article|2 citations·2008
집중관측사업의 현황과 발전 방향
김현희, 박선기

Domestic IOP (intensive observing period) has mostly been represented by the KEOP (Korea Enhanced Observing Period), which started the 5-yr second phase in 2006 after the first phase (2001-2005). During the first phase, the KEOP had focused on special observations (e.g., frontal systems, typhoons, etc.) around the Haenam supersite, while extended observations have been attempted from the second phase, e.g., mountain and downstream meteorology in 2006 and heavy rainfall in the mid-central region

7
Article|1 citations·2013
Haines Index를 이용한 동아시아 지역 산불 확산 위험도 변화와 지표-대기 상호관계와의 연관성 연구
이미나, 박선기, 홍승범

Many studies have related the recent variations of wildfire regime such as the increasing number of occurrances, their patterns and timing changes, and the severity of their extreme cases with global warming. However, there are only a few numbers of wildfire studies to assess how the future wildfire regime will change in the interactions between land and atmosphere with climate change especially over East Asia. This study was performed to estimate the future changing aspect of wildfire danger wi

8
Article|0 citations·2003
Estimation of Total Precipitable Water in East Asia Using the MODIS Satellite Data
박선기

In this study, the amounts of the total precipitable water (TPW) in both global and regional scale are estimated from the MODIS instrument, which is on-board the EOS satellites, Terra and Aqua. The estimation is made from the five near-infrared spectral bands, using a technique employing ratios of water-vapor absorbing channels centered at 0.905, 0.936, 0.940 μm with atmospheric window channels at 0.865 and 1.240 μm. Through analyses of monthly and eight-days mean TPW, one can monitor characteri

9
Article|0 citations·2018
Korean Global Data Assimilation and Prediction System
홍송유, 박선기, 박록진, Jimy Dudhia
10
Article|0 citations·2023
한국기상학회 향후 60년을 향한 미래 발전 방안
민기홍, 이준이, 박선기, 하경자, 홍윤, 서용석

Celebrating its 60th anniversary, this study suggests the future vision of the KoreanMeteorological Society (KMS) for the next 60 years. The vision is “to advance atmosphericscience and technology that contributes to human society as well as protect people from notonly climate change risks but also weather, climate, and environmental disasters”. Based on thesuggestions from its members, this study proposes the KMS future development plan as follows. The first plan is to strengthen in leading the

11
Article|0 citations·2020
Frequency Ratio와 Evidential Belief Function을 활용한 산사태 유발에 대한 환경지리적 민감성 분석과 검증 - 2013년 춘천 산사태를 중심으로 -
이원영, 성효현, 안세진, 박선기

The objective of this study is to characterize landslide susceptibility depending on various geoenvironmental variables as well as to compare the Frequency Ratio (FR) and Evidential Belief Function (EBF) methods for landslide susceptibility analysis of rainfall-induced landslides. In 2013, a total of 259 landslides occurred in Chuncheon, Gangwon Province, South Korea, due to heavy rainfall events with a total cumulative rainfall of 296~721mm in 106~231 hours duration. Landslides data were mapped

12
Article|0 citations·2024
Primary Factors and Synoptic Pattern Classification of Mega Asian Dust Storms in Korea
이승연, 윤지원, 박선기

High concentration Asian Dust Storms (ADSs) significantly impact health and economic activities by increasing atmospheric particulate matter. This study aims to understand the mechanisms, migration paths, and activity patterns of ADSs, which are essential for issuing timely warnings and aiding in atmospheric environment research. Using unsupervised learning methods, including the principal component analysis (PCA) and K-means clustering, we analyzed the mega ADS events from 2002 to 2022 based on

13
Article|0 citations·2024
Parameterizations of Snow Cover, Snow Albedo and Snow Density in Land Surface Models: A Comparative Review
이원영, Gim Hyeon-Ju, 박선기

Snow plays a vital role in the interaction between land and atmosphere in the state-of-the-art land surface models (LSMs) and the real world. While snow plays a crucial role as a boundary condition in meteorological applications and serves as a vital water resource in certain regions, the acquisition of its observational data poses significant challenges. An effective alternative lies in utilizing simulation data generated by Land Surface Models (LSMs), which accurately calculate the snow-relate

14
Article|0 citations·2024
민간기업을 위한 물리적 기후리스크 추정 연구
최용상, 유창현, 공민정, 조민정, 정해수, 이윤경, 박선기, 안명환, 황재학, 김성주

Private companies are increasingly required to take more substantial actions on climate change. This study introduces the principle and cases of climate (physical) risk estimation for 11 private companies in Korea. Climate risk is defined as the product of three major determinants: hazard, exposure, and vulnerability. Hazard is the intensity or frequency of weather phenomena that can cause disasters. Vulnerability can be reflected in the function that explains the relationship between past weath

15
Article|0 citations·2025
Impact of Assimilating GEMS Aerosol Optical Depth on Asian Dust Storm Prediction: Comparative Assessment with MODIS Observation
이예본, Zupanski Milija, 임수정, 박선기

Asian dust storms (ADSs), originating from the Gobi and Taklamakan deserts, have widespread impacts on air quality, climate, ecosystems, and public health across East Asia due to the large-scale aerosol transport. Accurate prediction of ADS is essential for developing eff ective mitigation strategies and reducing their public health and ecological repercussions. We investigated the impact of assimilating aerosol optical depth (AOD) from the Geostationary Environment Monitoring Spectrometer (GEMS

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