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Controls on the occurrence of submarine landslides around carbonate platforms and atolls in the northwest South China Sea

Li, Wei, Cai, Zhiyuan, Jing, Song, Alves, Tiago M. ORCID: https://orcid.org/0000-0002-2765-3760, Wang, Xiujuan, Wu, Shiguo and Zhan, Wenhuan 2026. Controls on the occurrence of submarine landslides around carbonate platforms and atolls in the northwest South China Sea. GSA Bulletin 10.1130/b38669.1

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Abstract

Submarine landslides are important hazards around carbonate platforms, posing a significant threat to coastal communities by generating tsunamis, while potentially damaging vital submarine infrastructure. Yet, the factors controlling slope instability near carbonate platforms remain poorly understood. In this study, we use high-resolution multibeam bathymetric and seismic reflection data to investigate submarine landslides on the flanks of carbonate platforms in the northwest South China Sea. We identify plastered and mounded contourite drifts that host submarine landslides of multiple sizes, with an area of 2.1−306 km2 and failed volumes of 0.03−11.8 km3. A global comparison of failed contourite drifts reveals that slope angle around carbonate platforms is lower (∼3.75°) than that on siliciclastic continental slopes (∼8.93°). We attribute this difference to the lower shear strength of the predominantly calcareous contourite drifts around carbonate platforms and atolls compared with siliciclastic continental slopes. Our findings show that intrinsic sediment weakness is a critical control on slope instability around carbonate platforms, highlighting it as an underestimated geohazard in carbonate depositional environments. Our results provide crucial information to develop robust risk assessment strategies and safer engineering practices around carbonate platforms and atolls.

Item Type: Article
Date Type: Published Online
Status: In Press
Schools: Schools > Earth and Environmental Sciences
Schools > Physical, Chemical & Environmental Sciences
Additional Information: RRS policy applied
Publisher: Geological Society of America
ISSN: 0016-7606
Date of First Compliant Deposit: 21 September 2026
Last Modified: 21 Sep 2026 09:00
URI: https://orca.cardiff.ac.uk/id/eprint/189385

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