Super paleo-typhoons striking southern Hainan Island in the northern South China Sea during the mid-late Holocene: Coral boulder evidence from a fringing reef

IF 4 1区 地球科学 Q1 GEOGRAPHY, PHYSICAL Global and Planetary Change Pub Date : 2025-02-27 DOI:10.1016/j.gloplacha.2025.104775
Shengnan Zhou , Qi Shi , Shichen Tao , Xiyang Zhang , Hongqiang Yan , Huiling Zhang , Zhiwei Hou , Wenlong Jing , Ji Yang
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Abstract

Hainan Island, situated at the northern margin of the South China Sea, is highly vulnerable to typhoon impacts, particularly super typhoons, which have caused catastrophic damage. Despite their persistent threats, research on these extreme events remains limited. At the Xiaodonghai Fringing Reef (XFR) in southern Hainan Island, coral boulders (CBs) distributed across the reef flat are interpreted as typhoon-transported features, serving as proxies for reconstructing past typhoon activity. This study establishes the relationships between (1) typhoon landfall wind velocities and wave heights along the South China and East China coasts, and (2) the mass of CBs on the XFR reef flat and their inferred typhoon wave heights. Utilizing these relationships, nine CBs were identified as having been transported by super typhoons. Through field positioning, radiometric dating, and comparisons with modern typhoon records, we identify five distinct phases of super paleo-typhoon (SuperPTY) that struck southern Hainan Island during the mid-late Holocene: 6970–6310 cal. aBP, 5890–5840 cal. aBP, 2490–1890 cal. aBP, 1630–1600 cal. aBP, and 1490–1450 cal. aBP. Notably, no super typhoons impacts have been recorded in recent decades. These SuperPTY phases correlate with atmospheric-oceanic teleconnections driven by the El Niño-Southern Oscillation and the Pacific Decadal Oscillation, as well as regional sea level fluctuations—factors that may also influence future super typhoon activity around Hainan Island under global warming. Further investigations into high-resolution sedimentary archives are recommended to advance understanding of spatiotemporal patterns in super typhoon occurrence.
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来源期刊
Global and Planetary Change
Global and Planetary Change 地学天文-地球科学综合
CiteScore
7.40
自引率
10.30%
发文量
226
审稿时长
63 days
期刊介绍: The objective of the journal Global and Planetary Change is to provide a multi-disciplinary overview of the processes taking place in the Earth System and involved in planetary change over time. The journal focuses on records of the past and current state of the earth system, and future scenarios , and their link to global environmental change. Regional or process-oriented studies are welcome if they discuss global implications. Topics include, but are not limited to, changes in the dynamics and composition of the atmosphere, oceans and cryosphere, as well as climate change, sea level variation, observations/modelling of Earth processes from deep to (near-)surface and their coupling, global ecology, biogeography and the resilience/thresholds in ecosystems. Key criteria for the consideration of manuscripts are (a) the relevance for the global scientific community and/or (b) the wider implications for global scale problems, preferably combined with (c) having a significance beyond a single discipline. A clear focus on key processes associated with planetary scale change is strongly encouraged. Manuscripts can be submitted as either research contributions or as a review article. Every effort should be made towards the presentation of research outcomes in an understandable way for a broad readership.
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