首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Storm rogue wave or tsunami origin for megaclast deposits in western Ireland and North Island New Zealand?
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PNAS Plus: Storm rogue wave or tsunami origin for megaclast deposits in western Ireland and North Island New Zealand?

机译:PNAS Plus:风暴流浪或海啸的起源是在西爱尔兰和新西兰北岛的巨晶沉积物?

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摘要

The origins of boulderite deposits are investigated with reference to the present-day foreshore of Annagh Head, NW Ireland, and the Lower Miocene Matheson Formation, New Zealand, to resolve disputes on their origin and to contrast and compare the deposits of tsunamis and storms. Field data indicate that the Matheson Formation, which contains boulders in excess of 140 tonnes, was produced by a 12- to 13-m-high tsunami with a period in the order of 1 h. The origin of the boulders at Annagh Head, which exceed 50 tonnes, is disputed. We combine oceanographic, historical, and field data to argue that this is a cliff-top storm deposit (CTSD). A numerical model for CTSDs is developed which indicates that boulder shape in addition to density and dimensions should be taken into account when applying hydrodynamic equations to such deposits. The model also predicts that the NE Atlantic storms are capable of producing boulderites that, when size alone is considered, cannot be distinguished from tsunamites. We review the characteristics that identify the origins of these two deposits.
机译:参照今天的西北爱尔兰安纳格海德(Annahh Head)海岸和新西兰下中新世Matheson地层调查了巨石矿床的成因,以解决有关其起源的争议,并对比和比较海啸和风暴的矿床。现场数据表明,含有超过140吨巨石的Matheson组是由12至13 m高的海啸产生的,周期约为1 h。超过50吨的安纳格海德巨石的产地存在争议。我们结合海洋,历史和野外数据来论证这是悬崖顶风暴沉积物(CTSD)。建立了CTSD的数值模型,该模型表明在对此类矿床应用流体动力学方程时,除了密度和尺寸外还应考虑巨石形状。该模型还预测,东北大西洋风暴能够产生巨石,仅考虑大小就无法与海啸区分开。我们回顾了识别这两个矿床成因的特征。

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