Choi Yong-Sang
Ewha Womans University · Engineering
About the Lab
Professor Choi Yong-Sang's research lab specializes in climate system dynamics, with a focus on climate sensitivity, feedback mechanisms, and extreme weather events. The lab investigates the role of cloud feedbacks—particularly the anvil cirrus 'iris effect'—in regulating tropical climate and Earth's energy balance. It also conducts detailed analyses of regional climate extremes, especially over East Asia, using observational data and advanced statistical methods such as Markov chain modeling. The lab emphasizes high-resolution regional reanalysis to improve climate monitoring and prediction for Korea and neighboring regions.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15We estimate climate sensitivity from observations, using the deseasonalized fluctuations in sea surface temperatures (SSTs)and the concurrent fluctuations in the top-of-atmosphere (TOA)outgoing radiation from the ERBE (1985-1999) and CERES (2000-2008) satellite instruments. Distinct periods of warming and cooling in the SSTs were used to evaluate feedbacks. An earlier study (Lindzen and Choi, 2009) was subject to significant criticisms. The present paper is an expansion of the earlier paper wher
Weather and climate extremes exert devastating influence on human society and ecosystem around the world. Recent observations show increase in frequency and intensity of climate extremes around the world including East Asia. In order to assess current status of the observed changes in weather and climate extremes and discuss possible mechanisms, this study provides an overview of recent analyses on such extremes over Korea and East Asia. It is found that the temperature extremes over the Korean
This study reviews the research of the past 20-years on the role of anvil cirrus in the Earth’s climate – research initiated by Lindzen et al. (Bull. Am. Meteor. Soc. 82:417-432, 2001). The original study suggested that the anvil cirrus would shrink with warming, which was estimated to induce longwave cooling for the Earth. This is referred to as the iris effect since the areal change hypothetically resembles the light control by the human eye’s iris. If the effect is strong enough, it exerts a
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
Record-breaking rainfall occurred over East Asia during the summer of 2020. However, in which aspect the summer of 2020 can be differentiated from the other years remains to be quantified. To this end, this study employs Markov chain analysis to quantify summer rainfall variability over East Asia using three Markov descriptors for heavy precipitation events of over 10 mm day−1: frequency, persistence, and entropy (i.e., irregularity). It is found that the heavy rainfall during the summer of 2020
Production of reanalysis data is important since it contributes to develop all fields of atmospheric sciences and to profit national economy. The developed countries such as USA, EU,and Japan have manufactured the global reanalysis data since the 1990s, but their data present a lack of detailed regional climates. For those who need to analyze the regional climate in/around Korea, a high-resolution reanalysis data should essentially be made. This study reviewed the existing reanalysis data and th
In recent years, the frequency of compound drought-heatwave events (CDHEs) has increased significantly. Previous studies have shown that CDHEs have a greater impact on society and ecosystems than individual hazards. Therefore, it is necessary to assess climate risk of CDHEs. However, few studies have investigated the current status of CDHEs in Republic of Korea and conducted related risk assessments. In this study, we used the MYRIAD-Hazard Event Sets Algorithm (MYRIAD-HESA), which generates mul
국제기후변화협약 및 정부의 저탄소 정책은 기본적으로 과학이 제시한 이산화탄소 증가에 대한 기후민감도에근거해야 한다. 그러나 기후민감도의 추정치는 현재까지 연구 단위별로 차이가 커서, 이에 대한 과학적 배경, 한계, 전망을 고찰할 필요가 있다. 본 연구에서는 지금까지의 기후민감도에 대한 국내외 연구 결과를 객관적으로 종합하여 검토한다. 기후민감도를 결정하는 것은 대기와 지면의 각종 물리과정에 의한 기후피드백 작용이며, 이 중 특히 태양 단파복사량을 조절하는 구름, 해빙과 관련된 물리과정은 불확실성이 가장 커서, 부정확한 민감도 추정을 야기하는 것으로 보인다. 이 때문에, 최근 인공위성 자료를 이용하여 추정한 기후민감도는 기후모델들이 갖는 범위(대기 중 이산화탄소 2배 증가당 지구평균기온 2-5 K 증가)에 들거나, 그보다 훨씬 작은 값을 갖는다.
우리나라에서 플라스틱으로 인한 해양오염이 심각함에도 불구하고 경로 예측 및 수거 방안에 대한 연구는 찾아보기어렵다. 본 연구에서는 미국 해양대기청(National Oceanic and Atmospheric Administration, NOAA)의 해양 표층해류 시뮬레이터(Ocean Surface CURrent Simulator, OSCURS)를 이용하여 2004년부터 2013년까지 계절별로 동․서해로 유입된 플라스틱 폐기물의 이동 경로를 예측하였고, 매개 중심성 분석을 통하여 효율적인 수거지점을 제안하였다. 효율적인 수거지점의 대부분이 계절과 상관없이 연안에 형성되었고, 그중에서도 동해는 울진 연안, 서해는 새만금-신안 연안이 플라스틱 폐기물을 효율적으로 수거할 수 있는 지역이었다.
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
Weather and climate extremes exert devastating influence on human society and ecosystem around the world. Recent observations show increase in frequency and intensity of climate extremes around the world including East Asia. In order to assess current status of the observed changes in weather and climate extremes and discuss possible mechanisms, this study provides an overview of recent analyses on such extremes over Korea and East Asia. It is found that the temperature extremes over the Korean
High-impact cold extremes have continued to bring devastating socioeconomic losses in recent years. In order to explain the exposure to cold extremes more comprehensively, this study investigates multiple aspects of boreal winter cold extremes, i.e., frequency, persistence, and entropy (Markovian descriptors). Cold extremes are defined by the bottom 10th percentile of daily minimum temperatures during 1950-2014 over the northern hemisphere. The spatial and temporal distributions of Markovian des
The Korean Peninsula frequently experiences localized torrential rainfall (LTR) in the summer. However, on August 8, 2022, a peculiar LTR occurred by the continuous generation of convective clouds within a few hours, numerical weather prediction model was hard to forecast such a high intensity of LTR. This study explores the possibility of uncovering potential precursory signals using remote sensing techniques in both Geostationary Korea Multi-Purpose Satellite 2A (GK2A) and the operational RKSG
본 연구에서는 위성관측운량을 지상관측운량에 가깝게 보정하기 위한 알고리즘을 개발하였다. 위성관측운량과 지상관측운량은 같은 구름을 각각 평면과 반구면에 투영한 관점이라는 차이를 가진다. 따라서, 개발된 위성보정 알고리즘은 평면의 위성관측 영역에 투영된 구름에 적절한 높이를 부여하여 지상관측 영역인 반구면에 투영된 구름으로 변환하는 것이 핵심이다. 이때 평면구름은 위성 구름탐지를 이용하며, 높이는 운정압력을 이용하여 결정한다. Himawari-8 Level 1B 관측자료로 입력자료를 만들어 기존의 위성관측운량과 개발된알고리즘을 통해 산출한 위성관측운량을 2016년 7월부터 2017년 6월, 매월 1일부터 7일까지 낮 시간 동안 한국(22개소)과 중국(724개소)의 종관지상관측소의 목측 전운량에 대해 검증하였다. 그 결과, 개발된 알고리즘을 통해 산출한 보정위성관측운량이 기존 위성관측운량에 비해 작은 평균오차(1.01 →0.61)를 가지며, 예측의 성공률(PC) 또한 증가(55% →61%
Research Areas
Dive deeper into Choi Yong-Sang's research on Nubint
Open this lab's papers in the app to read with AI, summarize, and cite in your writing.