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Modeling the large runup along a narrow segment of the Kaikoura coast, New Zealand following the November 2016 tsunami from a potential landslide

机译:在2016年11月潜在滑坡发生海啸之后,对新西兰凯库拉海岸狭窄部分的大型隆升进行建模

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The 2016 Mw 7.8 Kaikoura earthquake and consequent tsunami have been controversial because of uncertainty over whether and where the plate interface ruptured and the incapability of the proposed source models to reproduce the near-field runup of 7 m. Existing models identify a wide range of locations for the interface rupture, from on land to offshore, and fail to reproduce runup of 7 m near Kaikoura. To generate the large tsunami peak in Kaikoura tide gauge record and the observed runup height, offshore seafloor movement is necessary, but the offshore extension of the plate-interface rupture and its type, either seismic rupture or a landslide, is uncertain. Here, we propose a submarine landslide in addition to the earthquake source, with the landslide delayed 10-20 min after the earthquake rupture. The landslide volume is 4.5-5.2 km(3), located within 173.7-174.3 degrees E (longitude) and 42.6-42.15 degrees S (latitude). Our proposed dual tsunami source successfully reproduces near-field tide gauge records as well as observed near-field runup height of 7 m. We showed that more accurate source models of earthquakes can be achieved by considering observed runup data through runup inversions in addition to waveform inversions.
机译:由于不确定板界面是否破裂以及破裂的地点以及拟议的震源模型无法再现7 m的近场径迹,2016年的2016年凯库拉7.8级地震和随之而来的海啸一直引起争议。现有模型确定了从陆地到海上的界面破裂的广泛位置,并且未能在Kaikoura附近重现7 m的跳动。为了在凯库拉潮汐仪记录中产生大的海啸峰值和观测到的上升高度,离岸海底运动是必要的,但是板界面破裂的离岸扩展及其类型(地震破裂或滑坡)是不确定的。在这里,除了地震源外,我们还提出了海底滑坡,地震破裂后,该滑坡延迟了10-20分钟。滑坡量为4.5-5.2 km(3),位于东经173.7-174.3度和北纬42.6-42.15度之间。我们提出的双重海啸源成功地再现了近场潮汐仪记录以及观测到的近场径高7 m。我们表明,除了波形反演外,还可以通过运行反演来考虑观测到的运行数据,从而获得更准确的地震震源模型。

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