Tsunami hazard assessment in the South China Sea based on geodetic locking of the Manila subduction zone

Guangsheng Zhao, X. Niu
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Abstract

Abstract. This study provides a dataset and shows the spatial distribution of tsunami hazard in the South China Sea sourced from the Manila subduction zone. The plate motion data around the Manila subduction zone are used to invert the geodetic locking of the Manila subduction zone, further used to estimate the maximum possible magnitude and applied to obtain a more reliable tsunami hazard assessment. The spatial distribution of tsunami wave height with a 1000-year return period is shown, and several high-hazard areas in the South China Sea are pointed out. Uncertainties in the seismic source are explored, including the slip heterogeneity, the upper limit of seismic magnitude and segmentation. The impact of the locking distribution and randomness of slip on tsunami hazard assessment demonstrates that the traditional uniform slip assumption significantly underestimates the tsunami hazard. Moreover, the assessment results involving the effect of the locking distribution should be more realistic and show a larger tsunami height than when only considering the stochastic slip in most areas, which should prompt coastal management agencies to enhance tsunami prevention awareness.
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基于马尼拉俯冲带大地锁定的南海海啸灾害评估
摘要本研究提供了一个数据集,并显示了源自马尼拉俯冲带的南海海啸危害的空间分布。马尼拉俯冲带周围的板块运动数据被用来反演马尼拉俯冲带的大地锁定,进一步用来估算可能的最大震级,并应用于获得更可靠的海啸危害评估。显示了重现期为 1000 年的海啸波高的空间分布,并指出了中国南海的几个高危地区。探讨了震源的不确定性,包括滑移异质性、震级上限和分段。滑动的锁定分布和随机性对海啸危害评估的影响表明,传统的均匀滑动假设大大低估了海啸危害。此外,与大多数地区只考虑随机滑移相比,涉及锁定分布影响的评估结果应更加真实,并显示出更大的海啸高度,这应促使沿海管理机构提高海啸防范意识。
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