SCI Journal
| 91 | ![]() |
Lee, S. S., Choi, J., Seo, K.-H., Um, J., Jung, C. H., Song, S.-K., Manoj, M., & Kim, H.-K. 2026:Impacts of Urban Aerosols and Land Use on Clouds and Precipitation in Urban and Adjacent Non-Urban Areas. Urban Climate, 66, 102796, https://doi.org/10.1016/j.uclim.2026.102796. |
| 90 | ![]() |
Mengist, C. K. & Seo, K. H. 2026:Improving Subseasonal to Seasonal Global 2-meter Temperature and Precipitation Forecasts Using a Deep-Learning-Based Post-Processing Approach. Monthly Weather Review, 154, 391-405, https://doi.org/10.1175/MWR-D-25-0179.1. |
| 89 | ![]() |
Lee, S., Moon, W., Ahn, S., Son, S.-W., & Seo, K. -H. 2025:Influence of Baroclinic Eddies on the Hadley Cell Edge. Journal of Climate, 38(24), 7301-7313, https://doi.org/10.1175/JCLI-D-24-0705.1. |
| 88 | ![]() |
Seo, K. -H., Choi, J. -H., Lee, S. S., Lau, W. K. , Miyakawa, T., & Jin, H. -G. 2025: Aerosol effects on Maritime Continent precipitation: Oceanic intensification and land diurnal cycle delay. npj climate and atmospheric science, 8(1), 326, https://doi.org/10.1038/s41612-025-01215-5. |
| 87 | ![]() |
Sunkara, E., Seo, K. H., Mengist, C. K., Ratnam, M. V., Niranjan Kumar, K., & Venkata Chalapathi, G. 2024: Role of QBO and MJO in Sudden Stratospheric Warmings: A Case Study. Atmosphere, 15(12), 1458, https://doi.org/10.3390/atmos15121458. |
| 86 | ![]() |
Hur, I., Yoo, C., Yeh, S. W., Kim, Y. H., & Seo, K. H. 2024: Processes driving the intermodel spread of the Southern Hemisphere Hadley Circulation expansion in CMIP6 models. Journal of Geophysical Research: Atmospheres, 129(21), https://doi.org/10.1029/2024JD041726. |
| 85 | ![]() |
J.-W. Choi, and K.-H. Seo, 2024: Interdecadal variation of tropical cyclone genesis longitudes over the western North Pacific. Clim Dyn, 62, 3965-3975, https://doi.org/10.1007/s00382-024-07110-8. |
| 84 | ![]() |
Seo, K.-H., S.-P. Yoon, J. Lu, Y. Hu, P. W. Staten, and D. Frierson 2023: What controls the interannual variation of Hadley cell extent in the Northern Hemisphere: physical mechanism and empirical model for edge variation. npj climate and atmospheric science, 6(1), 204, https://doi.org/10.1038/s41612-023-00533-w. |
| 83 | ![]() |
Kim, J.-Y., and K.-H. Seo 2023: Physical mechanisms for the dominant summertime high-latitude atmospheric teleconnection pattern and the related Northern Eurasian climates. Environ. Res. Lett., 18(10),104022, https://doi.org/10.1088/1748-9326/acfa13. |
| 82 | ![]() |
Kim, H., S.-W. Son, H. Kim, K.-H. Seo, and M.-J. Kang 2023: MJO Influence on Subseasonal-to-Seasonal Prediction in the Northern Hemisphere Extratropics. J. Climate, 36(22),7943-7956, https://doi.org/10.1175/JCLI-D-23-0139.1. |
| 81 | ![]() |
Eswaraiah, S., K.-H. Seo, and Coauthors 2023: Intriguing Aspects of Polar-to-Tropical Mesospheric Teleconnections during the 2018 SSW: A Meteor Radar Network Study. Atmosphere, 14(8),1302, https://doi.org/10.3390/atmos14081302. |
| 80 | ![]() |
Mengist, C. K., and K.-H. Seo, Y. H. Kim, S. Eswaraiah, N. Ssessanga, Y.-S. Kwak, 2023: 3-D Regional Imaging of Ionosphere Over Africa Through Assimilating Satellite and Ground-Based Data. Journal of Geophysical Research: Space Physics 128(2), e2022JA030859,https://doi.org/10.1029/2022JA030859. |
| 79 | ![]() |
Lim, W.-I., H. S. Park, A. A. Petty, and K.-H. Seo , 2022: The Role of Summer Snowstorms on Seasonal Arctic Sea Ice Loss. Journal of Geophysical Research: Oceans, https://doi.org/10.1029/2021JC018066. |
| 78 | ![]() |
Eswaraiah, S., K.-H. Seo, K. N. Kumar, M. V. Ratnam, A. V. Koval, J.-Y. Jeong, C. K. Mengist, Y.-S. Lee, K. Greer, J.-Y. Hwang, W. Lee, M. Pramitha, G. V. Chalapathi, M. V. Reddy, and Y. H. Kim, 2022: Anthropogenic Influence on the Antarctic Mesospheric Cooling Observed during the Southern Hemisphere Minor Sudden Stratospheric Warming. Atmosphere, https://doi.org/10.3390/atmos13091475. |
| 77 | ![]() |
Lee, S. S., J.-H. Choi, G.-U. Kim, K.-J. Ha, K.-H. Seo, C.-H. Jung, J. S. Um, Y. Zheng, J. Guo, S.-K. Song, Y. G. Lee, and N. Utsumi, 2022: Examination of aerosol impacts on convective clouds and precipitation in two metropolitan areas in East Asia; how varying depths of convective clouds between the areas diversify those aerosol effects?. Atmospheric Chemistry and Physics, https://doi.org/10.5194/acp-22-9059-2022. |
| 76 | ![]() |
Mengist, C. K., and K.-H. Seo, 2022: How Long Can the MJO be Predicted During the Combined Phases of ENSO and QBO?. Geophysical Research Letters, https://doi.org/10.1029/2022GL097752. |
| 75 | ![]() |
Son, J.-H., and K.-H. Seo, 2022: East Asian summer monsoon precipitation response to variations in upstream westerly wind. Climate Dynamics, https://doi.org/10.1007/s00382-021-06117-9. |
| 74 | ![]() |
Lim, W.-I., H. S. Park, A. L. Stewart, and K.-H. Seo , 2022: Suppression of Arctic Sea Ice Growth in the Eurasian–Pacific Seas by Winter Clouds and Snowfall. Journal of Climate, https://doi.org/10.1175/JCLI-D-21-0282.1. |
| 73 | ![]() |
Seok, S.-H., and K.-H. Seo, 2021: Sensitivity of East Asian Summer Monsoon Precipitation to the Location of the Tibetan Plateau. Journal of Climate, DOI: 10.1175/JCLI-D-21-0154.1. |
| 72 | ![]() |
Park, H. S., Lim, W.-I., and K.-H. Seo , 2021: The decaying phase of El Niño and Indian summer monsoon rainfall. Indian Summer Monsoon Variability El-Nino Teleconnections and Beyond, https://doi.org/10.1016/B978-0-12-822402-1.00004-1. |
| 71 | ![]() |
Kim, T., S. Lee, H.-J. Park, D.-H. Cha, and K.-H. Seo , 2021: The impact of coupled air–sea interaction on extreme East Asian summer monsoon simulation in CMIP5 models . International Journal of Climatology, https://doi.org/10.1002/joc.7198. |
| 70 | ![]() |
Mengist, C. K., K.-H. Seo, R. Ding, and S.-W. Son, 2021: Potential Predictability of the MJO during Easterly and Westerly Phases of the QBO. Climate Dynamics, https://doi.org/10.1007/s00382-021-05733-9. |
| 69 | ![]() |
Son, J.-H., K.-H. Seo, and B. Wang, 2020: How Does the Tibetan Plateau Dynamically Affect Downstream Monsoon Precipitation?. Geophysical Research Letters, https://doi.org/10.1029/2020GL090543. |
| 68 | ![]() |
Park, H.-L., K.-H. Seo, B.-M. Kim, J.-Y. Kim, and S. Wang, 2021: Dominant Wintertime Surface Air Temperature Modes in the Northern Hemisphere Extratropics. Climate Dynamics, https://doi.org/10.1007/s00382-021-05629-8. |
| 67 | ![]() |
Kim, H.-K., K.-H. Seo, S.-W. Yeh, N.-Y. Kang, and B.-K. Moon, 2020: Asymmetric impact of Central Pacifc ENSO on the reduction of tropical cyclone genesis frequency over the western North Pacifc since the late 1990s. Climate Dynamics,https://doi.org/10.1007/s00382-019-05020-8. |
| 66 | ![]() |
Son, J.-H., K.-H. Seo, S.-W. Son, and D.-H. Cha, 2021: How does Indian monsoon regulate the Northern Hemisphere stationary wave pattern?. Frontiers in Earth Science, doi: 10.3389/feart.2020.599745. |
| 65 | ![]() |
Kim, S.-Y., J.-S. Kug, and K.-H. Seo, 2020: Impacts of MJO on the Intraseasonal Temperature Variation in East Asia. Journal of Climate, https://doi.org/10.1175/JCLI-D-20-0302.1. |
| 64 | ![]() |
Mengist, C. K., S. Yadav, K. Kotulak, A. Bahar, S.-R. Zhang, and K.-H. Seo, 2020: Validation of International Reference Ionosphere model (IRI-2016) for F-region peak electron density height (hmF2): Comparison with Incoherent Scatter Radar (ISR) and ionosonde measurements at Millstone Hill. Advances in Space Research, https://doi.org/10.1016/j.asr.2020.03.017. |
| 63 | ![]() |
Son, J.-H., and K.-H. Seo, 2020: Mechanisms for the Climatological Characteristics and Interannual Variations of the Guinea Coast Precipitation: Early Summer West African Monsoon. Atmosphere, https://doi.org/10.3390/atmos11040396. |
| 62 | ![]() |
Park, H.-S., S.-J. Kim, A. L. Stewart, S.-W. Son, and K.-H. Seo, 2019: Mid-Holocene Northern Hemisphere warming driven by Arctic amplification. Science Advances, https://doi.org/10.1126/sciadv.aax8203. |
| 61 | ![]() |
Kim, G.-U., K.-H. Seo, and D. Chen, 2019: Climate change over the Mediterranean and current destruction of marine ecosystem. Scientific Reports, https://doi.org/10.1038/s41598-019-55303-7. |
| 60 | ![]() |
Lee, H.-J., and K.-H. Seo, 2019: Impact of the Madden-Julian oscillation on Antarctic sea ice and its dynamical mechanism. Scientific Reports, https://doi.org/10.1038/s41598-019-47150-3. |
| 59 | ![]() |
Son, J.-H., K.-H. Seo, and B. Wang, 2019: Dynamical Control of the Tibetan Plateau on the East Asian Summer Monsoon. Geophysical Research Letters, https://doi.org/10.1029/2019GL083104. |
| 58 | ![]() |
Lim, Y., S.-W. Son, A. G. Marshall, H. H. Hendon, and K.-H. Seo, 2019: Influence of the QBO on MJO prediction skill in the subseasonal-toseasonal prediction models. Climate Dynamics, https://doi.org/10.1007/s00382-019-04719-y. |
| 57 | ![]() |
Lim, W.-I., and K.-H. Seo, 2019: Physical-Statistical Model for Summer Extreme Temperature Events over South Korea. Journal of Climate https://doi.org/10.1175/JCLI-D-18-0201.1. |
| 56 | ![]() |
Lee, S.-H., K.-H. Seo, and M.-H. Kwon, 2019: Combined Effects of El Niño and the Pacific Decadal Oscillation on Summertime Circulation over East Asia. APJAS, 55(1), 91-99, DOI:10.1007/s13143-018-00103-8. |
| 55 | ![]() |
Lee, H.-J., K.-H. Seo, Q. Wu, S.-S. Lee, and H.-S. Park, 2019: Combined Effect of the Madden-Julian Oscillation and Arctic Oscillation on Cold Temperature Over Asia. APJAS, 55(1), 75-89, DOI:10.1007/s13143-018-0091-2. |
| 54 | ![]() |
Park, H.-S., S.-J. Kim, K.-H. Seo, A. L. Stewart, S.-Y. Kim, and S.-W. Son, 2018: The impact of Arctic sea ice loss on mid-Holocene climate. Nature Communications, https://doi.org/10.1038/s41467-018-07068-2. |
| 53 | ![]() |
Ma, J., R. Chadwick, K.-H. Seo, C. Dong, G. R. Foltz, and J. H. Jiang, 2018: Responses of the tropical atmospheric circulation to climate change and its effect on the hydrological cycle. Reviews of Geophysics, 46: 549-80, https://doi.org/10.1146/annurev-earth-082517-010102. |
| 52 | ![]() |
Lee, S. S., B.-G. Kim, Z. Li, Y.-S. Choji, C.-H. Jung, J. Um, J. Mok, K.-H. Seo, 2018: Aerosol as a potential factor to control the increasing torrential rain events in urban areas over the last decades. Atmos. Chem. Phys., 18: 12531-12550, https://doi.org/10.5194/acp-18-12531-2018. |
| 51 | ![]() |
Hong, J.-S., S.-Y. Yeh, and K.-H. Seo, 2018: Diagnosing Physical Mechanisms Leading to Pure Heat Waves Versus Pure Tropical Nights Over the Korean Peninsula. Journal of Geophysical Research: Atmospheres, 123. https://doi.org/10.1029/2018JD028360. |
| 50 | ![]() |
Yeh, S.-W., Y.-J. Won, J.-S. Hong, K.-J. Lee, M. Kwon, K.-H. Seo, and Y.-G. Ham, 2018: The Record-Breaking Heat Wave in 2016 over South Korea and its Physical Mechanism. Monthly Weather Review, 146: 1463-1474, DOI: 10.1175/MWR-D-17-0205.1. |
| 49 | ![]() |
Seo, K.-H., and H.-J. Lee, 2017: Mechanisms for a PNA-like teleconnection pattern in response to the MJO. Journal of the Atmospheric Sciences, 74: 1767-1781, DOI: 10.1175/JAS-D-16-0343.1. |
| 48 | ![]() |
Park S., D.-J. Kim, S.-W. Lee, K.-W. Lee, J. Kim, E.-J. Song, and K.-H. Seo, 2017: Comparison of Extended Medium-Range Forecast Skill between KMA Ensemble, Ocean Coupled Ensemble, and GloSea5. APJAS, 53(3), 393-401, DOI:10.1007/s13143-017-0035-2. |
| 47 | ![]() |
Oh, H., J.-G. Jhun, K.-H. Ha, and K.-H. Seo, 2017: Combined Effect of the East Atlantic/West Russia and Western Pacific Teleconnections on the East Asian Winter Monsoon. APJAS, 53(2), 273-285, DOI:10.1007/s13143-017-0030-7. |
| 46 | ![]() |
Lee, S.-S., B.-G. Kim, S.-S Yum, K.-H. Seo, ..., et al 2017: Effects of aerosol on evaporation, freezing and precipitation in a multiple cloud system. Climate Dynamics, 48: 1069-1087, DOI 10.1007/s00382-016-3128-1. |
| 45 | ![]() |
Kim, J.-Y., K.-H. Seo, J.-H. Son, and K.-J. Ha, 2017: Development of Statistical Prediction Models for Changma Precipitation: An Ensemble Approach. APJAS, 53(2), 207-216, DOI:10.1007/s13143-017-0027-2. |
| 44 | ![]() |
Kim, G.-U., and K.-H. Seo, 2018: Identifying a key physical factor sensitive to the performance of Madden-Julian oscillation simulation in climate models. Climate Dynamics, DOI 10.1007/s00382-017-3616-y. |
| 43 | ![]() |
Seo, K.-H., H.-J. Lee, and D. M. W. Frierson, 2016: Unraveling the teleconnection mechanisms that induce wintertime temperature anomalies over the Northern Hemisphere continents in response to the Madden-Julian Oscillation. Journal of the Atmospheric Sciences,73, 3557-3571. |
| 42 | ![]() |
Choi, J., S.-W. Son, K.-H. Seo, J.-Y. Lee, and H.-S. Kang, 2016: Potential for long-lead prediction of the western North Pacific monsoon circulation beyond seasonal time scales, Geophysical Research Letters, DOI: 10.1002/2016GL067902. |
| 41 | ![]() |
Song, E.-J., and K.-H. Seo, 2016: Past- and present-day Madden-Julian Oscillation in CNRM-CM5.Geophysical Research Letters, 43, 4042-4048, doi:10.1002/2016GL068771. |
| 40 | ![]() |
Choi, J.-H., and K.-H. Seo, 2017: Effective control parameters in a deep convection scheme for improved simulation of the Madden–Julian oscillation. Climate Dynamics, 48(11), 3583-3597, doi:10.1007/s00382-016-3285-2. |
| 39 | ![]() |
Kim, H.-K., and K.-H. Seo, 2016: Cluster Analysis of Tropical Cyclone Tracks over the Western North Pacific using a Self-Organizing Map. Journal of Climate, 29, 3731-3751. |
| 38 | ![]() |
Lee, J.-Y., B. Wang, K.-H. Seo, K.-J. Ha, A. Kitoh, and J. Liu , 2015: Effects of Mountain Uplift on Global Monsoon Precipitation. APJAS, 51(3), 275-290. |
| 37 | ![]() |
Park, H.-l., K.-H. Seo, and J.-H. Son, 2015: Development of a Dynamics-Based Statistical Prediction Model for the Changma Onset. Journal of Climate, 28, 6647-6666. |
| 36 | ![]() |
Park, H.-S., B. R. Lintner, W. R. Boos, and K.-H. Seo, 2015: The effect of midlatitude transient eddies on monsoonal southerilies over East China. Journal of Climate, 28(21), 8450-8465. |
| 35 | ![]() |
Seo, K.-H.,
J.-H. Son, J.-Y. Lee, and H.-S. Park, 2015: Northern East Asian Monsoon Precipitation Revealed by Air Mass Variability and Its Prediction.
Journal of Climate, 28(15), 6221-6233.
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| 34 | ![]() |
Min, S.-K., S.-W. Son, K.-H. Seo, J.-S. Kug, S.-I. An, Y.-S. Choi, J.-H. Jeong, B.-M. Kim, J.-W. Kim, Y.-H. Kim, J.-Y. Lee, M.-I. Lee ,2015: Change in weather and climate extremes over Korea and possible causes: A review. APJAS, 51(2), 103-121. |
| 33 | ![]() |
Jiang X., D. E. Waliser, P. K. Xavier, ...,
K.-H. Seo, ..., et al., 2015: Vertical Structure and Physical Processes of the Madden-Julian Oscillation: Exploring Key Model Physics in Climate Simulations.
Journal of Geophysical Research: Atmospheres, 120(10): 4718-4748.
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| 32 | ![]() |
Seo, K.-H., D. M. W. Frierson, and J.-H. Son, 2014: A mechanism for future changes in Hadley circulation strength in CMIP5 climate change simulations. Geophysical Research Letters, 40, 5251-5258, doi: 10.1002/2014GL060868. |
| 31 | ![]() |
Lee, J.-Y., B. Wang, K.-H. Seo, J.-S. Kug, Y.-S. Choi, Y. Kosaka, K.-J. Ha, 2014: Future Change of Northern Hemisphere Summer Tropical-Extratropical Teleconnection in CMIP5. Journal of Climate, 27, 3643-3664. |
| 30 | ![]() |
Lee S.-E., and K.-H. Seo, 2013: The development of a statistical forecast model for Changma. Weather and Forecasting, 28, 1304-1321, doi: http://dx.doi.org/10.1175/WAF-D-13-00003.1. |
| 29 | ![]() |
Seo, K.-H., J. Ok , J.-H. Son and D.-H. Cha, 2013: Assessing future changes in the East Asian summer monsoon using CMIP5 coupled models. Journal of Climate, 26, 7662-7675. |
| 28 | ![]() |
Seo, K.-H., and J. Ok, 2013: Assessing future changes in the East Asian summer monsoon using CMIP3 models: Results from the best model ensemble. Journal of Climate, 26, 1807-1817. |
| 27 | ![]() |
Sooraj, K. P., and
K.-H. Seo, 2013: Boreal summer intraseasonal variability simulated in the NCEP climate forecast system : insights from moist static energy budget and sensitivity to convective moistening.
Climate Dynamics, 41, 1569-1594.
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| 26 | ![]() |
Seo, K.-H., and S.-W. Son, 2012: The Global Atmospheric Circulation Response to Tropical Diabatic Heating Associated with the Madden-Julian Oscillation during Northern Winter. Journal of the Atmospheric Sciences, 69, 79-96. |
| 25 | ![]() |
Seo, K.-H., J.-H. Son, S.-E. Lee, T. Tomita, and H.-S. Park 2012: Mechanisms of an extraordinary East Asian summer monsoon event in July 2011. Geophysical Research Letters, 39, L05704, doi:10.1029/2011GL050378. |
| 24 | ![]() |
Seo, K.-H., and E.-J. Song, 2012: Initiation of Boreal Summer Intraseasonal Oscillation: Dynamic Contribution by Potential Vorticity. Monthly Weather Review, 140(6),1748-1760. |
| 23 | ![]() |
Seo, K.-H., J.-H. Choi, and S.-D. Han, 2012: Factors for the Simulation of Convectively Coupled Kelvin Waves. Journal of Climate, 25, 3495-3514. |
| 22 | ![]() |
Wang, J., W. Wang, X. Fu, and K.-H., Seo, 2012: Tropical intraseasonal rainfall variability in the CFSR.Climate Dynamics, 38, 2191-2207. |
| 21 | ![]() |
Ding, R., J. Li, and K.-H. Seo, 2011: Estimate of the predictability of boreal summer and winter intraseasonal oscillations from observations. Monthly Weather Review, 2421-2438. |
| 20 | ![]() |
Son, S.-W., E. P. Gerber, J. Perlwitz, L. M. Polvani, N. Gillett,
K.-H. Seo, and SPARC/CCMVal co-authors, 2010: Impact of stratospheric ozone on the Southern Hemisphere circulation changes : A multimodel assessment.
Journal of Geophysical Research, 115, D00M07, doi:10.1029/2010JD014271.
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| 19 | ![]() |
Seo, K.-H., and W. Wang, 2010: The Madden-Julian Oscillation Simulated in the NCEP Climate Forecast System Model: The Importance of Stratiform Heating.
Journal of Climate, 23, 4770-4793.
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| 18 | ![]() |
Yun, K.-S., K.-H. Seo, and K.-H. Ha, 2010: Interdecadal change in the relationship between ENSO and the intraseasonal oscillation in East Asia. Journal of Climate, 23(13), 3599-3612. |
| 17 | ![]() |
Ding, R., J. Li, and K.-H. Seo, 2010: Predictability of the Madden-Julian Oscillation Estimated using Observational Data. Monthly Weather Review, 138, 1004-1013. |
| 16 | ![]() |
Seo, K.-H., 2009: Statistical-Dynamical Prediction of the Madden-Julian Oscillation Using NCEP Climate Forecast System (CFS). International Journal of Climatology, 29, 2146-2155, doi: 10.1002/joc. |
| 15 | ![]() |
Seo, K.-H., W. Wang, J. Gottschalck, Q. Zhang, J.-K. E. Schemm, W. R. Higgins, and A. Kumar, 2009: Evaluation of MJO Forecast Skill from Several Statistical and Dynamical Forecast Models. Journal of Climate, 22, 2372-2388. |
| 14 | ![]() |
Wang, W., and K.-H. Seo, 2009: The Madden-Julian Oscillation in NCEP Coupled Model Simulation.Terr. Atmos. Ocean Sci. 20, 713-725. |
| 13 | ![]() |
Kim, C.-H., Y.-K. Kim, H.-W. Lee, and K.-H. Seo, 2009: A Simple Method for Simulating Horizontal Ozone Concentration Fields over Coastal Area: A Case Study of the Seoul metropolitan area in Korea, Terr. Atmos. Ocean. Sci., 20(2), 355-363. |
| 12 | ![]() |
Seo, K.-H., and A. Kumar, 2008: The onset and life span of the Madden-Julian Oscillation. Theoretical and Applied Climatology, 94, 13-24, doi 10.1007/s00704-007-0340-2. |
| 11 | ![]() |
Kim, J. H., S. Na, R. V. Martin, K.-H. Seo, and M. J. Newchurch, 2008: Singular value decomposition analyses of tropical tropospheric ozone determined from TOMS. Geophysical Research Letters, VOL. 35, L15816, doi:10.1029/2008GL033690. |
| 10 | ![]() |
Yun, K.-S., K.-H. Seo, and K.-J. Ha, 2008: Relationship between ENSO and Northward Propagating ISO in the East Asian summer Monsoon System. Journal of Geophysical Research, 113, D14120, doi:10.1029/2008JD009901. |
| 9 | ![]() |
Kumar, A., Q. Zhang, J.-K. E. Schemm, M. L’Heureux, and K.-H. Seo, 2008: An assessment of errors in the simulation of atmospheric interannual variability in uncoupled AGCM simulations. J. Climate, 21, 2204-2217. |
| 8 | ![]() |
Lee, J.-W., K.-Y. Heo, K.-H. Seo, K.-J. Ha, K.-S. Park, K.-C. Jun, 2008: Simulations of the Mesoscale Cyclone Accompanying the Storm Surge on 30 March 2007 in the Western Coast of Korea. Asia-Pacific Journal of Atmospheric Sciences, 44, 2, 121-135. |
| 7 | ![]() |
Seo, K.-H., J.-K. E. Schemm, W. Wang, and A. Kumar, 2007: The boreal summer intraseasonal oscillation simulated in the NCEP Climate Forecast System (CFS): The effect of sea surface temperature. Monthly Weather Review, 135, 1807-1827. |
| 6 | ![]() |
Seo, K.-H., J.-K. E. Schemm, C. Jones, and S. Moorthi, 2005: Forecast Skill of the tropical intraseasonal oscillation in the NCEP GFS dynamical extended range forecasts. Climate Dynamics, 25, 265-284. |
| 5 | ![]() |
Seo, K.-H., and Y. Xue, 2005: MJO-related oceanic Kelvin waves and the ENSO cycle: A study with the NCEP Global Ocean Data Assimilation. Geophy. Research Letter, 32, L07712, doi:10.1029/2005GL022511. |
| 4 | ![]() |
Seo, K.-H., and K.-Y. Kim, 2003: Propagation and Initiation Mechanisms of the Madden-Julian Oscillation. Journal of Geophysical Research, 108, D13, 4384-4405. |
| 3 | ![]() |
Seo, K.-H., and K. P. Bowman, 2002: Lagrangian estimate of global stratosphere-troposphere mass exchange. J. Geophys. Res., 107(D21), 4555, doi:10.1029/2002JD002441. |
| 2 | ![]() |
Seo, K.-H., and K. P. Bowman, 2001: A climatology of isentropic cross-tropopause exchange. Journal of Geophysical Research, 106, 28159-28172. |
| 1 | ![]() |
Seo, K.-H., and K. P. Bowman, 2000: Levy flights and anomalous diffusion in the stratosphere. Journal of Geophysical Research, 105, 12295-12302. |
Article on the web
| 1 | NEW 클릭 |
NOAA/NWS Science & Technology Infusion Climate Bulletin, 2008 November HERE Kyong-Hwan Seo, Wanqiu Wang, and Jae-Kyung E. Schemm, 2008: Madden-Julian Oscillation and Convectively Coupled Equatorial Waves Simulated in the NCEP Global Forecast System and Climate Forecast System Models. |
KCI
| 20 | ![]() |
Son, S.-W., Kang, H.-S., Kim, B.-M., Kim, J.-H., Kim, J., Park, S.-H., Seo, K.-H., Lee, G., Lee, H. C., & Yeh, S.-W. , 2025: Redefining Changma. Atmosphere. Korean Meteorological Society, Vol. 35, No. 3 (2025) pp. 433-438, https://doi.org/10.14191/Atmos.2025.35.3.433. |
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Lim, W.-I., and K.-H. Seo, 2025: CICE5 Spatial-temporal Distribution Evaluation and Parameter Sensitivity Test for Sea Ice. Atmosphere. Korean Meteorological Society, Vol. 35, No. 1 (2025) pp. 101-111, https://doi.org/10.14191/Atmos.2025.35.1.101. |
| 18 | ![]() |
An, Soon-Il, Yeh, Sang-Wook, K.-H. Seo, Kug, Jong-Seong, Kim, Baek-Min, and Kim, Daehyun, 2023: Academic Development Status of Climate Dynamics in Korean Meteorological Society. Atmosphere. Korean Meteorological Society, Vol. 33, No. 2 (2023) pp. 125-154, https://doi.org/10.14191/Atmos.2023.33.2.125. |
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K.-H. Seo, and J.-H. Choi, 2022: An Economic Value for the First Precipitation Event during Changma Period. Atmosphere. Korean Meteorological Society, Vol. 32, No. 1 (2022) pp. 61-70, https://doi.org/10.14191/Atmos.2022.32.1.061. |
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Kim, G.-U., and K.-H. Seo, 2020: Global, Remote, and Local Effects on the Mediterranean Climate in Present-Day Simulations. Atmosphere. Korean Meteorological Society, Vol. 30, No. 3 (2020) pp. 311-318, https://doi.org/10.14191/Atmos.2020.30.3.311. |
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Lim, W.-I., and K.-H. Seo, 2018: Investigation on Characteristics of Summertime Extreme Temperature Events Occurred in South Korea Using Self-Organizing Map. Atmosphere. Korean Meteorological Society, Vol. 28, No. 3 (2018) pp. 305-315, https://doi.org/10.14191/Atmos.2018.28.3.305. |
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Kim, J.-Y., K.-H. Seo, S.-W Yeh, H.-K. Kim, S.-Y. Yim, H.-S. Lee, M. Kown, and Y.-G. Ham, 2017: Analysis of Characteristics for 2016 Changma rainfall. Atmosphere. Korean Meteorological Society, Vol. 27, No. 3 (2017) pp. 277-290, https://doi.org/10.14191/Atmos.2017.27.3.277. |
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Son, J.-H., and K.-H. Seo 2016: Hadley Circulation Strength Change in Response to Global Warming: Statistics of Good Models. Atmosphere. Korean Meteorological Society, 26(4), 665-672. |
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Kim, J.-Y., and K.-H. Seo 2014: The Development of Ensemble Statistical Prediction Model for Changma Precipitation. Atmosphere. Korean Meteorological Society, 24(4), 533-540. |
| 11 | ![]() |
Kim, H.-W., and K.-H. Seo 2014: Characteristics of the Gross Moist Stability in the Tropics and Its Future Change. Atmosphere. Korean Meteorological Society, 24(2), 141-150. |
| 10 | ![]() |
Son, J.-H., and K.-H. Seo 2012: Dominant Modes of the East Asian Summer Monsoon Using Equivalent Potential Temperature. Atmosphere. Korean Meteorological Society, 22(4), 483-488. |
| 9 | ![]() |
Kim, G.-U., Jung Ok, K.-H. Seo, and S.-D. Han 2012: Interdecadal Variability and Future Change in Spring Precipitation over South Korea. Atmosphere. Korean Meteorological Society, 22(4), 449-454. |
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Song, E.-J., and K.-H. Seo, 2012: Vertical Vorticity Structure Associated with the Boreal Summer Intraseasonal Oscillation: Barotropic or Baroclinic?, Atmosphere. Korean Meteorological Society, 22(2), 259-265. |
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An, Soon-Il, Ha, Kyung-Ja, K.-H. Seo, Yeh, Sang-Wook, Min, Seung-Ki and Ho, Chang-Hoi, 2011: A review of recent climate trends and causes over the Korean Peninsula, Climate Change Research, 2(4), 237-251. |
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Lee, S.-H., and K.-H. Seo, 2011: A multi-scale analysis of the interdecadal change in the Madden-Julian Oscillation, Atmosphere. Korean Meteorological Society, 21(2), 143-149. |
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Seo, K.-H., J.-H. Son, and J.-Y. Lee, 2011: A New Look at Changma, Atmosphere. Korean Meteorological Society, 21(1), 109-121. |
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Son, J.-H., and K.-H. Seo, 2010: Rainfall Characteristics of the Madden-Julian Oscillation from TRMM Precipitation Radar: Convective and Stratiform Rain, Atmosphere. Korean Meteorological Society, 20(3), 333-341. |
| 3 | ![]() |
Han, S.-D., and K.-H. Seo, 2009: East Asian Precipitation and Circulation Response to the Madden-Julian Oscillation, Jour. Korean Earth Science Society, 30(3), 282-293. |
| 2 | ![]() |
Lee, G.-H., and K.-H. Seo, 2008: Analysis of Diurnal and Semidiurnal Cycles of Precipitation over South Korea, J. Korean Meteor. Soc., 18(4), 475-483. |
| 1 | ![]() |
Seo, K.-H., and D.-K. Lee, 1996: Analysis and simulation of orographic rain in the middle part of the Korean Peninsula, J. Korean Meteor. Soc. 32, 511-533. |
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