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Hye-mi Kim

Ewha Womans University · 環境科学

研究室紹介

Professor Hye-mi Kim's research lab specializes in tropical climate dynamics, with a primary focus on the impacts of tropical Pacific Ocean warming modes—particularly East Pacific Warming (EPW) and Central Pacific Warming (CPW)—on global weather and climate variability. The lab investigates how these warming patterns influence tropical cyclone activity, atmospheric teleconnections, and vertical wind shear, with particular attention to regional impacts such as increased landfall potential along the Gulf of Mexico. Additionally, the lab contributes to improving seasonal and subseasonal climate prediction through evaluation of coupled ocean-atmosphere models and their biases in simulating key climate phenomena like the MJO. The research integrates observational analysis, climate modeling, and predictability assessment to enhance understanding of climate variability and improve forecast systems.

tropical cyclonesMJO predictabilityPacific climate modesseasonal predictionclimate model evaluation

Research Overview

Papers
183
Total Citations
5,934
Papers (5y)
54
Primary Field
環境科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
54total
2022
2023
2024
2025
2026
Citations per year (5y)
307total
20222023202420252026

Selected Papers

15
1
Article|390 citations·2009
Impact of Shifting Patterns of Pacific Ocean Warming on North Atlantic Tropical Cyclones
Hyemi Kim, Peter J. Webster, Judith A. Curry
SJR Q1Science

Two distinctly different forms of tropical Pacific Ocean warming are shown to have substantially different impacts on the frequency and tracks of North Atlantic tropical cyclones. The eastern Pacific warming (EPW) is identical to that of the conventional El Niño, whereas the central Pacific warming (CPW) has maximum temperature anomalies located near the dateline. In contrast to EPW events, CPW episodes are associated with a greater-than-average frequency and increasing landfall potential along

Atmospheric ScienceEarth and Planetary Sciences
2
Article|267 citations·2010
Modulation of North Pacific Tropical Cyclone Activity by Three Phases of ENSO
Hyemi Kim, Peter J. Webster, Judith A. Curry
SJR Q1Journal of ClimateOA

Abstract Tropical Pacific Ocean warming has been separated into two modes based on the spatial distribution of the maximum sea surface temperature (SST) anomaly: an east Pacific warming (EPW) and a central Pacific warming (CPW). When combined with east Pacific cooling (EPC), these three regimes are shown to have different impacts on tropical cyclone (TC) activity over the North Pacific by differential modulation of both local thermodynamic factors and large-scale circulation patterns. In EPW yea

Atmospheric ScienceEarth and Planetary Sciences
3
Article|251 citations·2012
Seasonal prediction skill of ECMWF System 4 and NCEP CFSv2 retrospective forecast for the Northern Hemisphere Winter
Hyemi Kim, Peter J. Webster, Judith A. Curry
SJR Q1Climate DynamicsOA

The seasonal prediction skill for the Northern Hemisphere winter is assessed using retrospective predictions (1982–2010) from the ECMWF System 4 (Sys4) and National Center for Environmental Prediction (NCEP) CFS version 2 (CFSv2) coupled atmosphere–ocean seasonal climate prediction systems. Sys4 shows a cold bias in the equatorial Pacific but a warm bias is found in the North Pacific and part of the North Atlantic. The CFSv2 has strong warm bias from the cold tongue region of the eastern Pacific

Global and Planetary ChangeEnvironmental Science
4
Article|228 citations·2012
Evaluation of short‐term climate change prediction in multi‐model CMIP5 decadal hindcasts
Hyemi Kim, Peter J. Webster, Judith A. Curry
SJR Q1Geophysical Research LettersOA

This study assesses the CMIP5 decadal hindcast/forecast simulations of seven state‐of‐the‐art ocean‐atmosphere coupled models. Each decadal prediction consists of simulations over a 10 year period each of which are initialized every five years from climate states of 1960/1961 to 2005/2006. Most of the models overestimate trends, whereby the models predict less warming or even cooling in the earlier decades compared to observations and too much warming in recent decades. All models show high pred

Global and Planetary ChangeEnvironmental Science
5
Review|189 citations·2018
Prediction of the Madden–Julian Oscillation: A Review
Hyemi Kim, Frédéric Vitart, Duane E. Waliser
SJR Q1Journal of Climate

Abstract There has been an accelerating interest in forecasting the weather and climate within the subseasonal time range. The Madden–Julian oscillation (MJO), an organized envelope of tropical convection, is recognized as one of the leading sources of subseasonal predictability. This review synthesizes the latest progress regarding the MJO predictability and prediction. During the past decade, the MJO prediction skill in dynamical prediction systems has exceeded the skill of empirical predictio

Global and Planetary ChangeEnvironmental Science
6
Article|168 citations·2014
Predictability and Prediction Skill of the MJO in Two Operational Forecasting Systems
Hyemi Kim, Peter J. Webster, Violeta E. Toma, Daehyun Kim
SJR Q1Journal of Climate

Abstract The authors examine the predictability and prediction skill of the Madden–Julian oscillation (MJO) of two ocean–atmosphere coupled forecast systems of ECMWF [Variable Resolution Ensemble Prediction System (VarEPS)] and NCEP [Climate Forecast System, version 2 (CFSv2)]. The VarEPS hindcasts possess five ensemble members for the period 1993–2009 and the CFSv2 hindcasts possess three ensemble members for the period 2000–09. Predictability and prediction skill are estimated by the bivariate

Global and Planetary ChangeEnvironmental Science
7
Article|107 citations·2012
Asian summer monsoon prediction in ECMWF System 4 and NCEP CFSv2 retrospective seasonal forecasts
Hyemi Kim, Peter J. Webster, Judith A. Curry, Violeta E. Toma
SJR Q1Climate DynamicsOA

The seasonal prediction skill of the Asian summer monsoon is assessed using retrospective predictions (1982–2009) from the ECMWF System 4 (SYS4) and NCEP CFS version 2 (CFSv2) seasonal prediction systems. In both SYS4 and CFSv2, a cold bias of sea-surface temperature (SST) is found over the equatorial Pacific, North Atlantic, Indian Oceans and over a broad region in the Southern Hemisphere relative to observations. In contrast, a warm bias is found over the northern part of North Pacific and Nor

Global and Planetary ChangeEnvironmental Science
8
Article|101 citations·2017
Changes in atmospheric rivers and moisture transport over the Northeast Pacific and western North America in response to ENSO diversity
Hyemi Kim, Yang Zhou, Michael A. Alexander
SJR Q1Climate Dynamics
Global and Planetary ChangeEnvironmental Science
9
Article|96 citations·2021
Deep learning for bias correction of MJO prediction
Hyemi Kim, Yoo‐Geun Ham, Young-Sik Joo, Seok‐Woo Son
SJR Q1Nature CommunicationsOA

Producing accurate weather prediction beyond two weeks is an urgent challenge due to its ever-increasing socioeconomic value. The Madden-Julian Oscillation (MJO), a planetary-scale tropical convective system, serves as a primary source of global subseasonal (i.e., targeting three to four weeks) predictability. During the past decades, operational forecasting systems have improved substantially, while the MJO prediction skill has not yet reached its potential predictability, partly due to the sys

Global and Planetary ChangeEnvironmental Science
10
Article|93 citations·2016
MJO Propagation across the Maritime Continent in the ECMWF Ensemble Prediction System
Hyemi Kim, Daehyun Kim, Frédéric Vitart, Violeta E. Toma, Jong‐Seong Kug, Peter J. Webster
SJR Q1Journal of Climate

Abstract The characteristics of the MJO propagation across the Maritime Continent are investigated using a 20-yr reforecast dataset from the ECMWF ensemble prediction system. Analysis of the MJO events initialized over the Indian Ocean (phase 2) shows that the initial MJO amplitude and prediction skill relationship is not linear, particularly when the predictions start in moderate (between strong and weak) MJO amplitude category. To examine the key factors that determine the prediction skill, re

Global and Planetary ChangeEnvironmental Science
11
Article|86 citations·2019
MJO Propagation Processes and Mean Biases in the SubX and S2S Reforecasts
Hyemi Kim, Matthew A. Janiga, Kathy Pegion
SJR Q1Journal of Geophysical Research AtmospheresOA

Abstract The Madden‐Julian oscillation (MJO) is the leading source of global subseasonal predictability; however, many dynamical forecasting systems struggle to predict MJO propagation through the Maritime Continent. Better understanding the biases in simulated physical processes associated with MJO propagation is the key to improve MJO prediction. In this study, MJO prediction skill, propagation processes, and mean state biases are evaluated in reforecasts from models participating in the Subse

Global and Planetary ChangeEnvironmental Science
12
Article|81 citations·2018
Life Cycle of Atmospheric Rivers: Identification and Climatological Characteristics
Yang Zhou, Hyemi Kim, Bin Guan
SJR Q1Journal of Geophysical Research AtmospheresOA

Abstract An atmospheric river (AR) event is a strong poleward moisture transport that is composed of a series of spatiotemporally connected instantaneous AR objects. A new object‐based tracking algorithm is developed in this study, which aims to identify an AR event and investigate its life cycle from origin to termination. The algorithm identifies duration, intensity, propagation speed and direction, and the traveled distance throughout the life cycle of the AR event. The tracking algorithm is

Global and Planetary ChangeEnvironmental Science
13
Article|79 citations·2020
The Lack of QBO‐MJO Connection in CMIP6 Models
Hyemi Kim, Julie M. Caron, Jadwiga H. Richter, Isla R. Simpson
SJR Q1Geophysical Research LettersOA

Abstract Observational analysis has indicated a strong connection between the stratospheric quasi‐biennial oscillation (QBO) and tropospheric Madden‐Julian oscillation (MJO), with MJO activity being stronger during the easterly phase than the westerly phase of the QBO. We assess the representation of this QBO‐MJO connection in 30 models participating in the Coupled Model Intercomparison Project 6. While some models reasonably simulate the QBO during boreal winter, none of them capture a differen

Atmospheric ScienceEarth and Planetary Sciences
14
Article|61 citations·2018
Interannual Modulation of Northern Hemisphere Winter Storm Tracks by the QBO
Jiabao Wang, Hyemi Kim, Edmund K. M. Chang
SJR Q1Geophysical Research Letters

Abstract Storm tracks, defined as the preferred regions of extratropical synoptic‐scale disturbances, have remarkable impacts on global weather and climate systems. Causes of interannual storm track variation have been investigated mostly from a troposphere perspective. As shown in this study, Northern Hemisphere winter storm tracks are significantly modulated by the tropical stratosphere through the quasi‐biennial oscillation (QBO). The North Pacific storm track shifts poleward during the easte

Atmospheric ScienceEarth and Planetary Sciences
15
Article|59 citations·2018
Modulation of the MJO and North Pacific Storm Track Relationship by the QBO
Jiabao Wang, Hyemi Kim, Edmund K. M. Chang, Seok‐Woo Son
SJR Q1Journal of Geophysical Research AtmospheresOA

Abstract This study demonstrates a possible impact of the quasi‐biennial oscillation (QBO) on the Madden‐Julian Oscillation (MJO)‐related North Pacific storm track (NPST) change during October–March for the period of 1979–2016. The NPST shows significant intraseasonal changes in response to the MJO. In general, when the MJO convection is located over the Indian Ocean (western to central Pacific), the NPST tends to shift poleward (southward). This MJO‐related NPST change has larger amplitude duri

Global and Planetary ChangeEnvironmental Science

Research Areas

Global and Planetary ChangeAtmospheric ScienceSignal ProcessingBiomedical EngineeringArtificial IntelligenceClinical Psychology

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