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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >A deep scar in the flank of Tenerife (Canary Islands): Geophysical contribution to tsunami hazard assessment
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A deep scar in the flank of Tenerife (Canary Islands): Geophysical contribution to tsunami hazard assessment

机译:特内里费岛(加那利群岛)侧面深深的疤痕:地球物理对海啸危害评估的贡献

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摘要

Among the high-intensity on-Earth tsunami generating events, seismicity, submarine landslides, and volcano lateral collapses are the most important [Ward, S.H., 2001. Landslide tsunami.]. Geophy. Res. 106, 11201-11215; Holcomb, R-T., Searle, R.C., 1991. Large landslides from oceanic volcanoes. Mar. Geotech. 10, 19-32; Tinti, S., Bortolucci, E., Romagnoli, C., 2000. Computer simulations of tsunamis due to the sector collapse ar Stromboli, Italy. J. Volcano. Geotherm. Res. 96, 103-128; Ward, S.N., Day, S., 2003. Ritter Island Volcano - lateral collapse and the tsunami of 1888. Geophys. J. Int. 154, 891-902; MacGuire, W.J., 2003. Volcano instability and lateral collapse. Revista 1, 33-45]. Offshore bathymetry studies highlighted huge accumulations of large mass-waste flows (up to thousands cubic kilometres) inherited from past lateral collapses or submarine landslides [Le Friant, A., Boudon, G., Deplus, C., Villemant, B., 2003. Large-scale flank collapse events during the activity of Montagne Pelee, Martinique, Lesser Antilles.J.Geophys. Res. 108, ECV13; Moore, J.G. et al., 1989. Prodigious submarine Landslides on the Hawaiian ridge. J. Geophys. Res. 94,17465-17484] which spread over more than 100 km off the northern Tenerife (Canary islands) coastline [Watts, A.B., Masson, D.G., 1995. A giant landslide on the north flank of Tenerife, Canary Islands. J. Geophys. Res. 100, 24487-24498]. Although mechanics and dynamics triggering such catastrophic events follow from combined complex processes and interactions [Hurlimann, M., Garcia-Piera,J.-O., Ledesma, A., 2000. Causes and mobility of large volcanic landslides: application to Tenerife, Canary Islands. J. Volcano. Geotherm. Res. 103, 121-134; Masson, D.G. et al., 2002. Slope failures on the flanks of the western Canary Islands. Earth-Sci. Rev. 57, 1-35; Reid, M.E., Sisson, T.W., Brien, D.L., 2001. Volcano collapse promoted by hydrothermal alteration and edifice shape, Mount Rainier, Washington. Geology 29, 779-782], potential movable volume is an unavoidable parameter to quantify and constrain tsunamigenic hazard. Numerical modelling of a tsunami generated by the potential La Palma landslide concluded that high amplitude waves threaten North Atlantic shorelines [Ward, S.N., Day, S.J., 2001. Cumbre Vieja volcano - Potential collapse and tsunami at La Palma, Canary Islands. Geophys. Res. Lett. 28, 397-400]. New audiomagnetotelluric results provide for the first time a good estimation of the Icod Valley (Tenerife, Canary islands) volume, a potential giant landslide threatening the same shorelines. Two profiles image its electrically conductive roots with a characteristic of a U-shaped cross-section thought to be the consequence of previous landslides. By this study, we show that North Atlantic Ocean shorelines might be exposed to a destructive tsunami generated by a subaerial lateral collapse of at least 120 km(3) during the next strong felsic eruptive activity of the Teide-Pico Viejo complex. This article highlights the degree of urgency of carrying out geophysical investigations on the flanks of most volcanic islands prone to potential flank collapse. These investigations will contribute to the understanding of their structure - a key parameter in the sliding process. Finally, all results should be included in model, providing a global map of tsunami hazard assessment.
机译:在产生高强度海啸的事件中,地震活动性,海底滑坡和火山岩的侧向塌陷是最重要的[Ward,S.H.,2001.滑坡海啸]。地理学。 Res。 106,11201-11215; 1991年,R.T。Holcomb,R.C。Searle。来自海洋火山的大型滑坡。 Mar. Geotech。 10、19-32; Tinti,S.,Bortolucci,E.,Romagnoli,C.,2000年。由于部门崩溃而对海啸进行的计算机模拟,位于意大利的Stromboli。 J.火山。地热。 Res。 96,103-128; Ward,S.N.,Day,S.,2003。里特岛火山-横向塌陷和1888年的海啸。地球物理学。 J.国际154,891-902; W.J.,MacGuire,2003年。火山不稳定和侧向坍塌。 Revista 1,33-45]。海上测深研究强调了过去的横向塌陷或海底滑坡所继承的大量大规模废物流(高达数千立方公里)的堆积[Le Friant,A.,Boudon,G.,Deplus,C.,Villemant,B.,2003 Montagne Pelee,Martinique,Less Antilles.J.Geophys活动期间的大规模侧面崩溃事件。 Res。 108,ECV13;摩尔(J.G.等人,1989年。夏威夷山脊上的巨大海底滑坡。 J.地球物理。 Res。 94,17465-17484]分布在距特内里费岛北部(加那利群岛)海岸线100多公里的地方[Watts,A.B.,Masson,D.G.,1995。加那利群岛特内里费岛北侧的巨大滑坡。 J.地球物理。 Res。 100,24487-24498]。尽管触发此类灾难性事件的力学和动力学是复杂的过程和相互作用共同作用的结果[Hurlimann,M.,Garcia-Piera,J.-O。,Ledesma,A.,2000。大型火山滑坡的成因和流动性:应用于特内里费岛,加那利群岛。 J.火山。地热。 Res。 103,121-134;马森,D.G.等人,2002。加那利群岛西部侧翼的斜坡破坏。地球科学。启示录57,1-35;里德(M.E.)里德,西森(TsW),布里恩(Dri),2001年。华盛顿州雷尼尔山(Rainier)的火山热液蚀变和建筑物形状助长了火山的坍塌。地质29,779-782],潜在的可移动体积是量化和限制海啸致灾性的不可避免参数。由潜在的拉帕尔玛滑坡产生的海啸的数值模拟得出结论,认为高振幅波威胁北大西洋海岸线[Ward,S.N.,Day,S.J.,2001. Cumbre Vieja火山-加那利群岛拉帕尔玛的潜在坍塌和海啸。地理学。 Res。来吧28,397-400]。新的大地电磁结果首次对艾科德河谷(加那利群岛的特内里费岛)的体积进行了很好的估算,这是一个潜在的巨大滑坡,威胁着同一条海岸线。两个剖面以其U形横截面的特征来描绘其导电根部,该形状被认为是先前滑坡的结果。通过这项研究,我们显示,在泰德-皮科维耶霍河群的下一次强长生火山喷发活动期间,北大西洋海岸线可能遭受至少120 km(3)的空中亚侧塌陷所产生的破坏性海啸。本文重点介绍了对大多数火山岛易发生侧倾倒塌的侧面进行地球物理研究的紧迫性。这些研究将有助于理解其结构-滑动过程中的关键参数。最后,所有结果都应纳入模型中,以提供全球海啸危害评估图。

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