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首页> 外文期刊>Natural hazards and earth system sciences >Numerical simulation of a tsunami event during the 1996 volcanic eruption in Karymskoye lake, Kamchatka, Russia
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Numerical simulation of a tsunami event during the 1996 volcanic eruption in Karymskoye lake, Kamchatka, Russia

机译:俄罗斯堪察加半岛Karymskoye湖1996年火山爆发期间海啸事件的数值模拟

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Karymskoye caldera lake is a nearly circular body of water with a diameter of approximately 4 km and a depth of up to 60 m. The sublacustrine, Surtseyan-type eruption in the lake on 2??"3 January 1996 included a series of underwater explosions. A field survey conducted the following summer showed signs of tsunami wave runup around the entire coastline of the lake, with a maximum of 29 m runup at the north shore near the source of the eruption, and 2-5 m runup at locations on the east and south shore far away from the source. The tsunami has been simulated using the numerical long wave model COULWAVE, with input from reconstructed realistic pre-eruption bathymetry. The tsunami source was chosen as suggested by Le Mehaute (1971) and Mirchina and Pelinovsky (1988). The initial wave was prescribed by a parabolic shape depression with a radius of R = 200m Combining double low line200 m, and a height of 23 m at the rim of the parabola. Simulations were conducted to show principle directions for wave propagation, wave speed and arrival time for the leading wave group at the shore, and the distribution of wave height throughout the lake. Estimated result for wave runup are of the same order of magnitude as field measurements, except near the source of the eruption and at a few locations where analysis show significant wave breaking.
机译:Karymskoye火山口湖是近乎圆形的水体,直径约4 km,深度达60 m。湖底的苏尔塞扬式喷发发生在1996年1月2日至3日,包括一系列水下爆炸。第二年夏天进行的现场调查显示,整个湖岸的海啸波上升的迹象,最大在喷发源附近的北岸有29 m的径流,在远离喷发源的东岸和南岸有2-5 m的径流,使用数值长波模型COULWAVE模拟了海啸,并输入了根据Le Mehaute(1971)和Mirchina and Pelinovsky(1988)的建议,选择海啸源,初始波由半径为R = 200m的抛物线形凹陷确定,并结合了双低线200 m模拟了抛物线边缘的高度,其高度为23 m,并进行了仿真,以显示波传播的主要方向,波速和岸上领先波群的到达时间以及波黑的分布整个湖。除在喷发源附近和在分析显示有明显波折的几个位置外,波加速的估计结果与现场测量的幅度相同。

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