A modelling study of possible impacts of Future Climate Change on Strong Typhoons in the Western North Pacific

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Thean, Y. T., C.-C. Wang, and Z.-W. Zheng, 2021: A Modelling Study of Possible Impacts of Future Climate Change on Strong Typhoons in the Western North Pacific. Proceedings of the 18th Annual Meeting of the Asia Oceania Geosciences Society (AOGS 2021), Singapore, AOGS, AS20-A016, https://doi.org/10.1142/9789811260100_0008.

Thean, Y. T., 2021: A modelling study of possible impacts of Future Climate Change on Strong Typhoons in the Western North Pacific. M.S. thesis, Department of Earth Sciences, National Taiwan Normal University, 179 pp., https://doi.org/10.6345/NTNU202101727.

Thean, Y. T., C.-C. Wang, and Z.-W. Zheng, 2022: A Modelling Study of Possible Impacts of Future Climate Change on Strong Typhoons in the Western North Pacific. Proceedings of the 18th Annual Meeting of the Asia Oceania Geosciences Society (AOGS 2021), V.-T.-V. Nguyen, S.-Y. Liong, and M. Satoh, Eds., World Scientific, 22-24, https://doi.org/10.1142/12958.

Hsieh, M.-R., Y. T. Thean, and C.-C. Wang, 2023: The Simulation Studies of Potential Influence of Future Long-term Climate Change on Super Typhoon Precipitation Cases in Western North Pacific. 37th Conference on Weather Analysis and Forecasting, Taiwan, Central Weather Bureau (CWB), A2-53, https://conf.cwa.gov.tw/media/cwa_past_conferences/112/fulltext_main.htm.

Thean, Y. T., M.-R. Hsieh, C.-C. Wang, and Z.-W. Zheng, 2024: Precipitation and Intensity Changes of Intense Typhoon Cases Over Western North Pacific in Future Climate. Proceedings of the 21st Annual Meeting of the Asia Oceania Geosciences Society (AOGS 2024), South Korea, AOGS, AS46-A001, https://www.meetmatt-svr.net/timetable/PresenterSchedule2024.


ERRATA

p. 4, para. 2, l. 1: Nakamura et al. (2015) (2016)
p. 6, para. 1, ll. 4, 7: Nakamura et al. (2015) (2016)
p. 6, para. 2, l. 5: Nakamura et al. (2015) (2016)
p. 6, para. 3, l. 2: Nakamura et al. (2015) (2016)
p. 18, para. 2, l. 3: whereas RCP4.5 RCP8.5
p. 36, para. 2, l. 10: so ptsflx of RCP8.5 (red) is stronger weaker
p. 58, col. 3, l. 1: Nakamura et al. (2015) (2016)
p. 71, fig. 3.2b, MCP of JMA: 985 980 975 965 950 930 920 905 905 905 895 895 910 940 940 940 940 975 970 965 960 960 955 945 925 915 905 895 885 885 910 940 950 950
p. 71, fig. 3.2b, MCP of JTWC: 970 967 956 941 926 922 911 907 907 903 895 895 899 914 926 933 937 956 956 956 956 956 948 941 929 918 914 903 907 911 933 956 952 952
p. 122, fig. 6.3.2c, Time (incl. data): 13110600 13110603 13110606 13110609 13110612 13110615 13110618 13110621 13110700 13110703 13110706 13110709 13110712 13110715 13110718 13110721 13110800 13110803 13110806 13110809 13110812 13110815 13110818 13110821 13110900 10101803 10101806 10101809 10101812 10101815 10101818 10101821 10101900
p. 123, fig. 6.3.2f, Time (incl. data): 18102306 18102309 18102312 18102315 18102318 18102321 18102400 18102403 18102406 18102409 18102412 18102415 18102418 18102421 18102500 18102503 18102506 18102509 18102512 18102515 18102518 18102521 18102600 18102603 18102606 16091315 16091318 16091321 16091400 16091403 16091406 16091409 16091412
p. 130, fig. 6.4.2c, Time (incl. data): 13110600 13110603 13110606 13110609 13110612 13110615 13110618 13110621 13110700 13110703 13110706 13110709 13110712 13110715 13110718 13110721 13110800 13110803 13110806 13110809 13110812 13110815 13110818 13110821 13110900 10101803 10101806 10101809 10101812 10101815 10101818 10101821 10101900
p. 131, fig. 6.4.2f, Time (incl. data): 18102306 18102309 18102312 18102315 18102318 18102321 18102400 18102403 18102406 18102409 18102412 18102415 18102418 18102421 18102500 18102503 18102506 18102509 18102512 18102515 18102518 18102521 18102600 18102603 18102606 16091315 16091318 16091321 16091400 16091403 16091406 16091409 16091412