Publications

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Journal

2016
15  

Tung, Y.-S., C.-T. Chen, S.-K. Min, and L.-Y. Lin, 2016: Evaluating extreme rainfall changes over Taiwan using a standardized index. Terr. Atmos. Ocean. Sci., 27, 705-715. 

14  

Cha, D.-H., D.-K. Lee, C.-S. Jin, G. Kim, Y. Choi, M.-S. Suh, J.-B. Ahn, S.-Y. Hong, S.-K. Min, S.-C. Park, H.-S. Kang, 2016: Future changes in summer precipitation in regional climate simulations over the Korean Peninsula forced by multi-RCP scenarios of HadGEM2-AO. Asia-Pacific J. Atmos. Sci., 52, 139-149. 

13  

Suh, M.-S., S.-G. Oh, Y.-S. Lee, J.-B. Ahn, D.-H. Cha, D.-K. Lee, S.-Y. Hong, S.-K. Min, S.-C. Park, H.-S. Kang, 2016: Projections of high resolution climate changes for South Korea using multiple-regional climate models based on four RCP scenarios. Part 1: surface air temperature. Asia-Pacific J. Atmos. Sci., 52, 151-169. 

12  

Oh, S.-G., M.-S. Suh, Y.-S. Lee, J.-B. Ahn, D.-H. Cha, D.-K. Lee, S.-Y. Hong, S.-K. Min, S.-C. Park, H.-S. Kang, 2016: Projections of high resolution climate changes for South Korea using multiple-regional climate models based on four RCP scenarios. Part 2: precipitation. Asia-Pacific J. Atmos. Sci., 52, 171-189.   

11  

Choi, Y.-W., J.-B. Ahn, M.-S. Suh, D.-H. Cha, D.-K. Lee, S.-Y. Hong, S.-K. Min, S.-C. Park, H.-S. Kang, 2016: Future changes in drought characteristics over South Korea using multi regional climate models with the standardized precipitation index. Asia-Pacific J. Atmos. Sci., 52, 209-222. 

10  

Ahn, J.-B., S. Jo, M.-S. Suh, D.-H. Cha, D.-K. Lee, S.-Y. Hong, S.-K. Min, S.-C. Park, H.-S. Kang, K.-M. Shim, 2016: Changes of precipitation extremes over South Korea projected by the 5 RCMs under RCP scenarios. Asia-Pacific J. Atmos. Sci., 52, 223-236. 

9  

Lim, E.-P., H. H. Hendon, J. M. Arblaster, F. Delage, H. Nguyen, S.-K. Min and M. C. Wheeler, 2016: The impact of the Southern Annular Mode on future changes in Southern Hemisphere rainfall. Geophys. Res. Lett., 7160–7167, doi:10.1002/2016GL069453. 

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8  

Weller, E., S.-K. Min, W. Cai, F. W. Zwiers, Y.-H. Kim, and D. Lee, 2016: Human-caused Indo-Pacific warm pool expansion. Sci. Adv., 2, e1501719, doi: 10.1126/sciadv.1501719.

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7  

Weller, E., S.-K. Min, M. Palmer, D. Lee, B. Y. Yim, and S.-W. Yeh, 2016: Multi-model attribution of upper-ocean temperature changes using an isothermal approach. Sci. Rep., 6, 26926, doi:10.1038/srep26926. 

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6  

Kim, Y., M. Jun, S.-K. Min, M.-S. Suh, and H.-S. Kang, 2016: Spatial analysis of future East Asian seasonal temperature using two regional climate model simulations. Asia-Pacific J. Atmos. Sci., 52, 237-249. 

5  

Lee, D., S.-K. Min, C. Park, M.-S. Suh, J.-B. Ahn, D.-H. Cha, D.-K. Lee, S.-Y. Hong, S.-C. Park, and H.-S. Kang, 2016: Time of emergence of anthropogenic warming signals in the Northeast Asia assessed from multi-regional climate models. Asia-Pacific J. Atmos. Sci., 52, 129-137. 

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4  

Kumar, P., S.-K. Min, E. Weller, H. Lee, and X. L. Wang, 2016: Influence of climate variability on extreme ocean surface wave heights assessed from ERA-Interim and ERA-20C reanalyses. J. Climate, 29, 4031-4046.

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3  

Park, C., S.-K. Min, D. Lee, D.-H. Cha, M.-S. Suh, H.-S. Kang, S.-Y. Hong, D.-K. Lee, H.-J. Baek, K.-O. Boo, and W.-T. Kwon, 2016: Evaluation of multiple regional climate models for summer climate extremes over East Asia. Climate Dyn., 46, 2469-2486, doi:10.1007/s00382-015-2713-z. 

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2  

Kim, Y.-H., S.-K. Min, X. Zhang, F. Zwiers, L. V. Alxander, M. G. Donat, and Y.-S. Tung, 2016: Attribution of extreme temperature changes during 1951-2010. Climate Dyn., 46, 1769-1782, doi: 10.1007/s00382-015-2674-2. 

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1  

King, A. D., M. T. Black, S.-K. Min, E. M. Fischer, D. M. Mitchell, L. J. Harrington, and S. E. Perkins-Kirkpatrick, 2016: Emergence of heat extremes attributable to anthropogenic influences. Geophys. Res. Lett., 43, 3438-3443, doi:10.1002/2015GL067448 

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