Field survey of Typhoon Hato (2017) and a comparison with storm surge modeling in Macau

Author:

Li LinlinORCID,Yang JieORCID,Lin Chuan-Yao,Chua Constance TingORCID,Wang Yu,Zhao Kuifeng,Wu Yun-TaORCID,Liu Philip Li-Fan,Switzer Adam D.ORCID,Mok Kai Meng,Wang Peitao,Peng Dongju

Abstract

Abstract. On 23 August 2017 a Category 3 hurricane, Typhoon Hato, struck southern China. Among the hardest hit cities, Macau experienced the worst flooding since 1925. In this paper, we present a high-resolution survey map recording inundation depths and distances at 278 sites in Macau. We show that one-half of the Macau Peninsula was inundated, with the extent largely confined by the hilly topography. The Inner Harbor area suffered the most, with a maximum inundation depth of 3.1 m at the coast. Using a combination of numerical models, we simulate and reproduce this typhoon and storm surge event. We further investigate the effects of tidal level and sea level rise on coastal inundations in Macau during the landfall of a “Hato-like” event.

Funder

AXA Research Fund

Publisher

Copernicus GmbH

Subject

General Earth and Planetary Sciences

Reference37 articles.

1. Atkinson, J., McKee Smith, J., and Bender, C.: Sea-Level Rise Effects on Storm Surge and Nearshore Waves on the Texas Coast: Influence of Landscape and Storm Characteristics, J. Water. Port C., 139, 98–117, https://doi.org/10.1061/(ASCE)WW.1943-5460.0000187, 2013.

2. Benfield, A.: Weather, Climate & Catastrophe Insight 2017 Annual Report, Aon Benfield, available at: https://reliefweb.int/sites/reliefweb.int/files/resources/20180124-ab-if-annual-report-weather-climate-2017.pdf, last access: 6 June 2018.

3. Bilskie, M. V., Hagen, S. C., Alizad, K., Medeiros, S. C., Passeri, D. L., Needham, H. F., and Cox, A.: Dynamic simulation and numerical analysis of hurricane storm surge under sea level rise with geomorphologic changes along the northern Gulf of Mexico, Earth's Future, 4, 177–193, https://doi.org/10.1002/2015EF000347, 2016.

4. Egbert, G. D. and Erofeeva, S. Y.: Efficient Inverse Modeling of Barotropic Ocean Tides, J. Atmos. Ocean. Tech., 19, 183–204, https://doi.org/10.1175/1520-0426(2002)019<0183:EIMOBO>2.0.CO;2, 2002.

5. ESCAP/WMO Typhoon Committee: Member Report, available at: http://www.typhooncommittee.org/12IWS/docs/Members/China20171026_final.pdf (last access: 20 June 2018), 2017.

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