Tsunami Runup and Inundation in Tonga from the January 2022 Eruption of Hunga Volcano

被引:33
作者
Borrero, Jose C. C. [1 ,2 ]
Cronin, Shane J. J. [3 ]
Latu'ila, Folauhola Helina [4 ]
Tukuafu, Pupunu [4 ]
Heni, Nikolasi [4 ]
Tupou, Ana Maea [4 ]
Kula, Taaniela [4 ]
Fa'anunu, Ofa [5 ]
Bosserelle, Cyprien [6 ]
Lane, Emily [6 ]
Lynett, Patrick [2 ]
Kong, Laura [7 ]
机构
[1] eCoast Marine Consulting & Res, Raglan, New Zealand
[2] Univ Southern Calif, Tsunami Res Ctr, Sonny Astani Dept Civil & Environm Engn, Los Angeles, CA 90007 USA
[3] Univ Auckland, Dept Geol & Earth Sci, Auckland, New Zealand
[4] Tonga Geol Serv, Nukualofa, Tonga
[5] Tonga Meteorol Serv, Nukualofa, Tonga
[6] Natl Inst Water & Atmospher Res, Christchurch, New Zealand
[7] UNESCO IOC Int Tsunami Informat Ctr, Honolulu, HI USA
关键词
Tsunamis; volcanic hazard and risk; field survey; eyewitness; ISLANDS;
D O I
10.1007/s00024-022-03215-5
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
On January 15th, 2022, at approximately 4:47 pm local time (0347 UTC), several weeks of heightened activity at the Hunga volcano 65 km northwest of Tongatapu, culminated in an 11-h long violent eruption which generated a significant near-field tsunami. Although the Kingdom of Tonga lies astride a large and tsunamigenic subduction zone, it has relatively few records of significant tsunami. Assessment activities took place both remotely and locally. Between March and June 2022, a field team quantified tsunami runup and inundation on the main populated islands Tongatapu and Eua, along with several smaller islands to the north, including the Ha'apai Group. Peak tsunami heights were similar to 19 m in western Tongatapu, similar to 20 m on south-eastern Nomuka Iki island and similar to 20 m on southern Tofua, located similar to 65 km S and E and 90 km N from Hunga volcano, respectively. In western Tongatapu, the largest tsunami surge overtopped a 13-15 m-high ridge along the narrow Hihifo peninsula in several locations. Analysis of tide gauge records from Nukualofa (which lag western Tongatapu arrivals by similar to 18-20 min), suggest that initial tsunami surges were generated prior to the largest volcanic explosions at similar to 0415 UTC. Further waves were generated by similar to 0426 UTC explosions that were accompanied by air-pressure waves. Efforts to model this event are unable to reproduce the timing of the large tsunami wave that toppled a weather station and communication tower on a 13 m-high ridge on western Tongatapu after 0500 UTC. Smaller tsunami waves continued until similar to 0900, coincident with a second energetic phase of eruption, and noted by eyewitnesses on Tungua and Mango Islands. Despite an extreme level of destruction caused by this tsunami, the death toll was extraordinarily low (4 victims). Interviews with witnesses and analysis of videos posted on social media suggest that this can be attributed to the arrival of smaller 'pre tsunami' waves that prompted evacuations, heightened tsunami awareness due to tsunami activity and advisories on the day before, the absence of tourists and ongoing tsunami education efforts since the 2009 Niuatoputapu, Tonga tsunami. This event highlights an unexpectedly great hazard from volcanic tsunami worldwide, which in Tonga's case overprints an already extreme level of tectonic tsunami hazard. Education and outreach efforts should continue to emphasize the 'natural warning signs' of strong ground shaking and unusual wave and current action, and the importance of self-evacuation from coastal areas of low-lying islands. The stories of survival from this event can be used as global best practice for personal survival strategies from future tsunami.
引用
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页码:1 / 22
页数:22
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